The 2020 release of the ExoMol database: Molecular line lists for exoplanet and other hot atmospheres

[1]  M. Marley,et al.  EXOPLINES: Molecular Absorption Cross-section Database for Brown Dwarf and Giant Exoplanet Atmospheres , 2021, The Astrophysical Journal Supplement Series.

[2]  J. Tennyson,et al.  The ExoMolOP database: Cross sections and k-tables for molecules of interest in high-temperature exoplanet atmospheres , 2020, 2009.00687.

[3]  L. McKemmish,et al.  Experimental energy levels of 12C14N through marvel analysis. , 2020, Monthly notices of the Royal Astronomical Society.

[4]  J. Tennyson,et al.  Analysis of the TiO isotopologues in stellar optical spectra , 2020, 2008.02092.

[5]  J. Tennyson,et al.  Thirty years of H3+ astronomy , 2020 .

[6]  Laura K. McKemmish,et al.  An update to the MARVEL data set and ExoMol line list for 12C2 , 2020, Monthly Notices of the Royal Astronomical Society.

[7]  J. Tennyson,et al.  W2020: A Database of Validated Rovibrational Experimental Transitions and Empirical Energy Levels of H216O , 2020 .

[8]  Thomas M. Mellor,et al.  ExoMol line lists – XXXIX. Ro-vibrational molecular line list for CO2 , 2020, Monthly Notices of the Royal Astronomical Society.

[9]  K. Chubb,et al.  The ARCiS framework for exoplanet atmospheres , 2020, 2006.12821.

[10]  B. Drouin,et al.  Empirical rovibrational energy levels of ammonia up to 7500 cm−1 , 2020, Journal of Quantitative Spectroscopy and Radiative Transfer.

[11]  J. Tennyson,et al.  ExoMol line lists – XXXVIII. High-temperature molecular line list of silicon dioxide (SiO2) , 2020, Monthly Notices of the Royal Astronomical Society.

[12]  I. Gordon,et al.  Empirical normal intensity distribution for overtone vibrational spectra of triatomic molecules , 2020, Journal of Quantitative Spectroscopy and Radiative Transfer.

[13]  Deheng Shi,et al.  Rovibrational transition properties of the X1Σ+ and A1Π states of carbon monosulfide , 2020 .

[14]  J. Tennyson,et al.  MARVEL Analysis of the Measured High-resolution Rovibronic Spectra of the Calcium Monohydroxide Radical (CaOH) , 2020, The Astrophysical Journal Supplement Series.

[15]  Laurence S. Rothman,et al.  Referencing Sources of Molecular Spectroscopic Data in the Era of Data Science: Application to the HITRAN and AMBDAS Databases , 2020, Atoms.

[16]  G. Hashimoto,et al.  H2O2-induced Greenhouse Warming on Oxidized Early Mars , 2020, The Astrophysical Journal.

[17]  J. Tennyson,et al.  Ions in the Thermosphere of Exoplanets: Observable Constraints Revealed by Innovative Laboratory Experiments , 2020, The Astrophysical Journal.

[18]  K. Chubb,et al.  Aluminium oxide in the atmosphere of hot Jupiter WASP-43b , 2020, Astronomy & Astrophysics.

[19]  K. Chance,et al.  A semi-empirical potential energy surface and line list for H216O extending into the near-ultraviolet , 2020, Atmospheric Chemistry and Physics.

[20]  A. Bonomo,et al.  Molecular cross-sections for high-resolution spectroscopy of super-Earths, warm Neptunes, and hot Jupiters , 2020, Monthly Notices of the Royal Astronomical Society.

[21]  S. Seager,et al.  Photochemistry of Anoxic Abiotic Habitable Planet Atmospheres: Impact of New H2O Cross Sections , 2020, The Astrophysical Journal.

[22]  F. Spiegelman,et al.  A new set of atmosphere and evolution models for cool T–Y brown dwarfs and giant exoplanets , 2020, Astronomy & Astrophysics.

[23]  J. Tennyson,et al.  The high-temperature rotation-vibration spectrum and rotational clustering of silylene (SiH2) , 2020, Journal of Quantitative Spectroscopy and Radiative Transfer.

[24]  C. Helling,et al.  The atmospheres of rocky exoplanets , 2020, Astronomy & Astrophysics.

[25]  J. Tennyson,et al.  Empirical Line Lists in the ExoMol Database , 2020, Atoms.

[26]  Laura K. McKemmish,et al.  Diatomic Rovibronic Transitions as Potential Probes for Proton-to-Electron Mass Ratio Across Cosmological Time , 2020, Australian Journal of Chemistry.

[27]  Zhengxing Wei,et al.  Line Lists for the ${{\rm{X}}}^{1}{{\rm{\Sigma }}}^{+}$ State of CS , 2020 .

[28]  I. Gordon,et al.  An Accurate, Extensive, and Practical Line List of Methane for the HITEMP Database , 2020, The Astrophysical Journal Supplement Series.

[29]  J. Tennyson,et al.  ExoMol molecular line lists – XXXVII. Spectra of acetylene , 2020, 2001.04550.

[30]  I. Gordon,et al.  Use of the complete basis set limit for computing highly accurate ab initio dipole moments. , 2020, The Journal of chemical physics.

[31]  S. Yurchenko,et al.  Observation of electric-quadrupole infrared transitions in water vapor , 2020, Physical Review Research.

[32]  I. Gordon,et al.  Calculated line lists for H216O and H218O with extensive comparisons to theoretical and experimental sources including the HITRAN2016 database , 2020, Journal of Quantitative Spectroscopy and Radiative Transfer.

[33]  J. Tennyson,et al.  Analysis of the first overtone bands of isotopologues of CO and SiO in stellar spectra , 2019, Astronomy & Astrophysics.

[34]  D. Apai,et al.  Helios-r2: A New Bayesian, Open-source Retrieval Model for Brown Dwarfs and Exoplanet Atmospheres , 2019, The Astrophysical Journal.

[35]  P. Bernath MoLLIST: Molecular Line Lists, Intensities and Spectra , 2020 .

[36]  G. Tinetti,et al.  TauREx 3: A Fast, Dynamic, and Extendable Framework for Retrievals , 2019, 1912.07759.

[37]  J. Tennyson,et al.  ExoMol molecular line lists – XXXV. A rotation-vibration line list for hot ammonia , 2019, Monthly Notices of the Royal Astronomical Society.

[38]  A. N. Smirnov,et al.  Spectroscopy of YO from first principles. , 2019, Physical chemistry chemical physics : PCCP.

[39]  W. Bains,et al.  Phosphine as a Biosignature Gas in Exoplanet Atmospheres. , 2019, Astrobiology.

[40]  È. Roueff,et al.  The full infrared spectrum of molecular hydrogen , 2019, Astronomy & Astrophysics.

[41]  Jonathan Tennyson,et al.  Water vapour in the atmosphere of the habitable-zone eight-Earth-mass planet K2-18 b , 2019, Nature Astronomy.

[42]  J. Tennyson,et al.  ExoMol molecular line lists XXXVI: X 2Π – X 2Π and A 2Σ+ – X 2Π transitions of SH , 2019, Monthly Notices of the Royal Astronomical Society.

[43]  N. Markov A quantum propulsion method , 2019, Sustainable Development and Innovations in Marine Technologies.

[44]  H. Ramani,et al.  Direct detection of nuclear scattering of sub-Gev dark matter using molecular excitations , 2019, Physical Review Research.

[45]  P. Bernath,et al.  ExoMol line list – XXXIV. A rovibrational line list for phosphinidene (PH) in its $X\, {}^3\Sigma ^-$ and $a\, {}^1\Delta$ electronic states , 2019, Monthly Notices of the Royal Astronomical Society.

[46]  P. Bernath,et al.  MARVEL analysis of the measured high-resolution spectra of14NH , 2019, Journal of Molecular Spectroscopy.

[47]  K. Molaverdikhani,et al.  petitRADTRANS , 2019, Astronomy & Astrophysics.

[48]  Y. Pavlenko SiO Bands in the Infrared Spectra of Late-Type Stars , 2019, Kinematics and Physics of Celestial Bodies.

[49]  Keith A. Jones,et al.  Benchmark Rovibrational Linelists and Einstein A-coefficients for the Primordial Molecules and Isotopologues , 2019, The Astrophysical Journal.

[50]  S. Eliet,et al.  BUILDING A DATABASE FOR QCL PUMPED FAR-IR LASERS , 2019, Proceedings of the 74th International Symposium on Molecular Spectroscopy.

[51]  J. Gizis,et al.  The Need for Laboratory Measurements and Ab Initio Studies to Aid Understanding of Exoplanetary Atmospheres , 2019, 1905.07064.

[52]  S. Yurchenko,et al.  Theoretical rotation-vibration spectroscopy of cis- and trans-diphosphene (P2H2) and the deuterated species P2HD. , 2019, The Journal of chemical physics.

[53]  Laura K. McKemmish,et al.  ExoMol molecular line lists – XXXIII. The spectrum of Titanium Oxide , 2019, Monthly Notices of the Royal Astronomical Society.

[54]  P. Jensen,et al.  Variationally Computed IR Line List for the Methyl Radical CH3. , 2019, The journal of physical chemistry. A.

[55]  J. Tennyson,et al.  ExoMol line lists – XXXII. The rovibronic spectrum of MgO , 2019, Monthly Notices of the Royal Astronomical Society.

[56]  A. Császár,et al.  MARVEL Analysis of the Measured High-Resolution Rovibronic Spectra and Definitive Ideal-Gas Thermochemistry of the 16O2 Molecule , 2019, Journal of Physical and Chemical Reference Data.

[57]  C. Woodward,et al.  Gas phase SiO in the circumstellar environment of the recurrent nova T Coronae Borealis , 2019, Monthly Notices of the Royal Astronomical Society.

[58]  Laurence S. Rothman,et al.  Spectroscopic line parameters of NO, NO2, and N2O for the HITEMP database , 2019, Journal of Quantitative Spectroscopy and Radiative Transfer.

[59]  J. Tennyson,et al.  The infrared spectrum of PF3 and analysis of rotational energy clustering effect , 2019, Molecular Physics.

[60]  J. Tennyson,et al.  Accurate empirical rovibrational energies and transitions of H216O. , 2019, Physical chemistry chemical physics : PCCP.

[61]  J. Tennyson,et al.  A variationally computed room temperature line list for AsH3. , 2019, Physical chemistry chemical physics : PCCP.

[62]  G. Orton,et al.  Probable detection of hydrogen sulphide (H2S) in Neptune’s atmosphere , 2018, Icarus.

[63]  H. Knutson,et al.  Forward Modeling and Retrievals with PLATON, a Fast Open-source Tool , 2018, Publications of the Astronomical Society of the Pacific.

[64]  M. Mallonn,et al.  An optical transmission spectrum of the ultra-hot Jupiter WASP-33 b , 2018, Astronomy & Astrophysics.

[65]  W. Thiel,et al.  The rotation-vibration spectrum of methyl fluoride from first principles. , 2018, Physical chemistry chemical physics : PCCP.

[66]  Jonathan Tennyson,et al.  Analysis of gaseous ammonia (NH3) absorption in the visible spectrum of Jupiter - Update , 2018, Icarus.

[67]  S. Cabot,et al.  On the robustness of analysis techniques for molecular detections using high-resolution exoplanet spectroscopy , 2018, Monthly Notices of the Royal Astronomical Society.

[68]  D. Tokaryk,et al.  The spectrum of N2 from 4,500 to 15,700 cm−1 revisited with pgopher , 2018, Journal of Quantitative Spectroscopy and Radiative Transfer.

[69]  P. Bernath,et al.  A new linelist for the A3Π–X3Σ− transition of the NH free radical , 2018, Journal of Quantitative Spectroscopy and Radiative Transfer.

[70]  J. Tennyson,et al.  A highly accurate ab initio dipole moment surface for the ground electronic state of water vapour for spectra extending into the ultraviolet. , 2018, The Journal of chemical physics.

[71]  S. Brezinsek,et al.  Synthetic spectra of BeH, BeD and BeT for emission modeling in JET plasmas , 2018, Journal of Physics B: Atomic, Molecular and Optical Physics.

[72]  S. Cabot,et al.  Evidence for Multiple Molecular Species in the Hot Jupiter HD 209458b , 2018, The Astrophysical Journal.

[73]  J. Tennyson,et al.  ExoMol line lists XXXI: spectroscopy of lowest eights electronic states of C2 , 2018, Monthly Notices of the Royal Astronomical Society.

[74]  J. Tennyson,et al.  ExoMol molecular line lists XXX: a complete high-accuracy line list for water , 2018, Monthly Notices of the Royal Astronomical Society.

[75]  P. Bernath,et al.  Line Lists for AlF and AlCl in the X1Σ+ Ground State , 2018, The Astrophysical Journal Supplement Series.

[76]  J. Tennyson,et al.  ExoMol line lists XXV: a hot line list for silicon sulphide, SiS , 2018, 1806.11177.

[77]  J. Tennyson,et al.  ExoMol molecular line lists – XXVII. Spectra of C2H4 , 2018, 1806.03469.

[78]  J. Tennyson,et al.  ExoMol line lists – XXIX. The rotation-vibration spectrum of methyl chloride up to 1200 K , 2018, Monthly Notices of the Royal Astronomical Society.

[79]  J. Tennyson,et al.  ExoMol linelists XXVIII: the rovibronic spectrum of AlH , 2018, Monthly Notices of the Royal Astronomical Society.

[80]  P. Bernath,et al.  Line list for the ground state of CaF , 2018 .

[81]  J. Tennyson,et al.  ExoMol molecular line lists – XXVI: spectra of SH and NS , 2018, 1803.09724.

[82]  J. Tennyson,et al.  High-accuracy water potential energy surface for the calculation of infrared spectra , 2018, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.

[83]  J. Tennyson,et al.  Critical evaluation of measured rotational–vibrational transitions of four sulphur isotopologues of S16O2 , 2018 .

[84]  P. Bernath,et al.  Improved Ultraviolet and Infrared Oscillator Strengths for OH+ , 2018 .

[85]  P. Bernath,et al.  Line Lists for LiF and LiCl in the X1Σ+ Ground State , 2018 .

[86]  A. Yachmenev,et al.  RichMol: A general variational approach for rovibrational molecular dynamics in external electric fields. , 2018, The Journal of chemical physics.

[87]  S. Yurchenko,et al.  Anomalous phosphine sensitivity coefficients as probes for a possible variation of the proton-to-electron mass ratio , 2018, 1808.05427.

[88]  J. Tennyson,et al.  EXOCROSS: a general program for generating spectra from molecular line lists , 2018, Astronomy & Astrophysics.

[89]  Nikolay Nikolov,et al.  A library of ATMO forward model transmission spectra for hot Jupiter exoplanets , 2017, 1710.10269.

[90]  N. Madhusudhan,et al.  Retrieval of exoplanet emission spectra with HyDRA , 2017, 1710.06433.

[91]  E. R. Polovtseva,et al.  Marvel analysis of the measured high-resolution rovibrational spectra of H232S , 2017, Journal of Quantitative Spectroscopy and Radiative Transfer.

[92]  Laura K. McKemmish,et al.  Marvel Analysis of the Measured High-resolution Rovibronic Spectra of 90Zr16O , 2017, The Astrophysical Journal.

[93]  J. Birkby Spectroscopic Direct Detection of Exoplanets , 2018 .

[94]  Jonathan Tennyson,et al.  Original Research By Young Twinkle Students (ORBYTS): when can students start performing original research? , 2018 .

[95]  R. Freedman,et al.  Data for: Ames-2016 Line Lists for 13 Isotopologues of CO2: Updates, Consistency, and Remaining Issues , 2017 .

[96]  Sergei N. Yurchenko,et al.  Total internal partition sums for 166 isotopologues of 51 molecules important in planetary atmospheres: Application to HITRAN2016 and beyond , 2017 .

[97]  C. Hill,et al.  The ExoMol pressure broadening diet: H 2 and He line-broadening parameters , 2017 .

[98]  P. Bernath,et al.  Line list for the MgF ground state , 2017 .

[99]  J. Tennyson,et al.  ExoMol line lists - XXII. The rotation-vibration spectrum of silane up to 1200 K , 2017, 1712.09354.

[100]  C. Hill,et al.  ExoMol line lists XXIV: a new hot line list for silicon monohydride, SiH , 2017, 1710.06964.

[101]  Takayuki Kotani,et al.  High-resolution Spectroscopic Detection of TiO and a Stratosphere in the Day-side of WASP-33b , 2017, 1710.05276.

[102]  J. Borovička,et al.  The CaO orange system in meteor spectra , 2017 .

[103]  A. Nikitin,et al.  Accurate Theoretical Methane Line Lists in the Infrared up to 3000 K and Quasi-continuum Absorption/Emission Modeling for Astrophysical Applications , 2017 .

[104]  F. Lefévre,et al.  VUV-absorption cross section of carbon dioxide from 150 to 800 K and applications to warm exoplanetary atmospheres , 2017, 1709.08415.

[105]  Antonio Claret,et al.  Detection of titanium oxide in the atmosphere of a hot Jupiter , 2017, Nature.

[106]  J. Tennyson,et al.  ExoMol molecular line lists - XXIII. Spectra of PO and PS , 2017, 1709.03001.

[107]  Tomas Stolker,et al.  Polarized scattered light from self-luminous exoplanets , 2017, 1706.09427.

[108]  J. Tennyson,et al.  A hybrid line list for CH4 and hot methane continuum. , 2017, Astronomy and astrophysics.

[109]  N. Madhusudhan,et al.  genesis: new self-consistent models of exoplanetary spectra , 2017, 1706.02302.

[110]  Andrew Gould,et al.  A giant planet undergoing extreme-ultraviolet irradiation by its hot massive-star host , 2017, Nature.

[111]  J. Tennyson,et al.  Laboratory spectra of hot molecules: data needs for hot super-Earth exoplanets , 2017, 1705.07198.

[112]  Sergei N. Yurchenko,et al.  ExoMol line list – XXI. Nitric Oxide (NO) , 2017, 1705.05955.

[113]  P. Bernath,et al.  Fourier Transform Spectroscopy of the A3Π–X3Σ− Transition of OH+ , 2017 .

[114]  I. P. Waldmann,et al.  A Population Study of Gaseous Exoplanets , 2017, 1704.05413.

[115]  J. Tennyson,et al.  ExoMol molecular line lists – XX. A comprehensive line list for H3+ , 2017, 1704.04096.

[116]  J. Tennyson,et al.  Simulating electric field interactions with polar molecules using spectroscopic databases , 2017, Scientific Reports.

[117]  Roman I. Ovsyannikov,et al.  ExoMol molecular line lists XIX: high accuracy computed hot line lists for H218O and H217O , 2017, 1702.03570.

[118]  J. Tennyson,et al.  Room temperature line lists for CO2 symmetric isotopologues with ab initio computed intensities , 2017, 1701.08267.

[119]  Jonathan Tennyson,et al.  The ExoMol project: Software for computing large molecular line lists , 2016, 1607.01220.

[120]  J. Tennyson,et al.  MARVEL Analysis of the Measured High-resolution Rovibronic Spectra of 48Ti16O , 2017 .

[121]  R. L. Roy,et al.  LEVEL: A computer program for solving the radial Schrödinger equation for bound and quasibound levels , 2017 .

[122]  C. Western PGOPHER: A program for simulating rotational, vibrational and electronic spectra , 2017 .

[123]  J. Tennyson,et al.  Predicted Landé g-factors for open shell diatomic molecules , 2016, 1701.00176.

[124]  J. Tennyson,et al.  Definitive Ideal-Gas Thermochemical Functions of the H216O Molecule , 2016, 1611.00324.

[125]  J. Tennyson,et al.  ExoMol line lists – XVIII. The high-temperature spectrum of VO , 2016, 1609.06120.

[126]  J. Tennyson Perspective: Accurate ro-vibrational calculations on small molecules. , 2016, The Journal of chemical physics.

[127]  Gary B. Hughes,et al.  Remote laser evaporative molecular absorption spectroscopy , 2016, Optical Engineering + Applications.

[128]  J. Tennyson,et al.  Ab initio calculations to support accurate modelling of the rovibronic spectroscopy calculations of vanadium monoxide (VO) , 2016, 1609.05073.

[129]  Jonathan Tennyson,et al.  The 2015 edition of the GEISA spectroscopic database , 2016 .

[130]  Y. Babikov,et al.  TheoReTS – An information system for theoretical spectra based on variational predictions from molecular potential energy and dipole moment surfaces , 2016 .

[131]  I. Baraffe,et al.  The Effects of Consistent Chemical Kinetics Calculations on the Pressure-Temperature Profiles and Emission Spectra of Hot Jupiters , 2016, 1607.04062.

[132]  J. Tennyson,et al.  ExoMol line lists – XV. A new hot line list for hydrogen peroxide , 2016, 1607.00498.

[133]  A. A. Azzam,et al.  ExoMol molecular line lists - XVI: The rotation-vibration spectrum of hot H$_2$S , 2016, 1607.00499.

[134]  Jacob L. Bean,et al.  HELIOS: AN OPEN-SOURCE, GPU-ACCELERATED RADIATIVE TRANSFER CODE FOR SELF-CONSISTENT EXOPLANETARY ATMOSPHERES , 2016, 1606.05474.

[135]  J. Tennyson,et al.  The ab initio calculation of spectra of open shell diatomic molecules , 2016, 1605.02301.

[136]  P. Bernath,et al.  EXPERIMENTAL ENERGY LEVELS AND PARTITION FUNCTION OF THE 12C2 MOLECULE , 2016, 1605.01504.

[137]  T. Evans,et al.  DETECTION OF H2O AND EVIDENCE FOR TiO/VO IN AN ULTRA-HOT EXOPLANET ATMOSPHERE , 2016, 1604.02310.

[138]  S. Beirle,et al.  Detection of water vapour absorption around 363 nm in measured atmospheric absorption spectra and its effect on DOAS evaluations , 2016 .

[139]  Ahmed F. Al-Refaie,et al.  The ExoMol database: Molecular line lists for exoplanet and other hot atmospheres , 2016, 1603.05890.

[140]  Jonathan Tennyson,et al.  The virtual atomic and molecular data centre (VAMDC) consortium , 2016 .

[141]  J. Tennyson,et al.  ExoMol molecular line lists - XVII. The rotation-vibration spectrum of hot SO3 , 2016, 1603.04065.

[142]  P. Barklem,et al.  Partition functions and equilibrium constants for diatomic molecules and atoms of astrophysical interest , 2016, 1602.03304.

[143]  L. Schaefer,et al.  SOLUBILITY OF ROCK IN STEAM ATMOSPHERES OF PLANETS , 2016, 1602.00658.

[144]  Sergei N. Yurchenko,et al.  Duo: A general program for calculating spectra of diatomic molecules , 2016, Comput. Phys. Commun..

[145]  J. Tennyson,et al.  Radiative lifetimes and cooling functions for astrophysically important molecules , 2016, 1601.07997.

[146]  S. Tashkun,et al.  A room temperature CO2 line list with ab initio computed intensities , 2016, 1601.05334.

[147]  J. Yates,et al.  The Physics of Water Masers observable with ALMA and SOFIA: Model Predictions for Evolved Stars , 2015, 1510.06182.

[148]  Daniel J. Frohman,et al.  Molecular line lists: The ro-vibrational spectra of NaF and KF , 2016 .

[149]  J. Tennyson,et al.  A variationally calculated room temperature line-list for H2O2 , 2015 .

[150]  Fengshan Liu,et al.  A database of narrow-band parameters for fuels commonly encountered in fire applications , 2015 .

[151]  P. Bernath,et al.  EMPIRICAL LINE LISTS AND ABSORPTION CROSS SECTIONS FOR METHANE AT HIGH TEMPERATURES , 2015, 1510.06982.

[152]  I. Gordon,et al.  Peculiarities of high-overtone transition probabilities in carbon monoxide revealed by high-precision calculation. , 2015, The Journal of chemical physics.

[153]  Gary B. Hughes,et al.  Stand-off molecular composition analysis , 2015, SPIE Optical Engineering + Applications.

[154]  G. Tinetti,et al.   ?> -REx. II. RETRIEVAL OF EMISSION SPECTRA , 2015, 1508.07591.

[155]  J. Tennyson,et al.  MARVEL analysis of the measured high-resolution spectra of 14NH3 , 2015 .

[156]  James S. A. Brooke,et al.  Note: Improved line strengths of rovibrational and rotational transitions within the X(3)Σ(-) ground state of NH. , 2015, The Journal of chemical physics.

[157]  J. Tennyson,et al.  ExoMol molecular line lists – XI. The spectrum of nitric acid , 2015, 1507.02276.

[158]  J. Tennyson,et al.  ExoMol molecular line lists – XII. Line lists for eight isotopologues of CS , 2015, 1507.01275.

[159]  J. Hodges,et al.  High-Accuracy CO(2) Line Intensities Determined from Theory and Experiment. , 2015, Physical review letters.

[160]  C. Hill,et al.  ExoMol molecular line lists - XIII: The spectrum of CaO , 2015, 1512.08987.

[161]  R. L. Roy,et al.  ExoMol molecular line lists - X. The spectrum of sodium hydride , 2015, 1506.00174.

[162]  J. Hornkohl,et al.  Computation of diatomic molecular spectra for selected transitions of aluminum monoxide, cyanide, diatomic carbon, and titanium monoxide , 2015 .

[163]  J. Tennyson,et al.  ExoMol molecular line lists: IX The spectrum of AlO , 2015, 1504.02938.

[164]  J. Tennyson,et al.  The calculated rovibronic spectrum of scandium hydride, ScH , 2015, 1504.04051.

[165]  J. Tennyson,et al.  ExoMol line lists – VIII. A variationally computed line list for hot formaldehyde , 2015, 1506.00172.

[166]  James S. A. Brooke,et al.  Line strengths of rovibrational and rotational transitions in the X2Π ground state of OH , 2015, 1503.08420.

[167]  S. Yurchenko A theoretical room-temperature line list for 15NH3 , 2015, 1502.07975.

[168]  L. Cidale,et al.  DISCOVERY OF SiO BAND EMISSION FROM GALACTIC B[e] SUPERGIANTS , 2015, 1501.07063.

[169]  Tokyo Institute of Technology,et al.  THEORETICAL EMISSION SPECTRA OF ATMOSPHERES OF HOT ROCKY SUPER-EARTHS , 2015, 1501.05393.

[170]  Laurence S. Rothman,et al.  ROVIBRATIONAL LINE LISTS FOR NINE ISOTOPOLOGUES OF THE CO MOLECULE IN THE X1Σ+ GROUND ELECTRONIC STATE , 2015 .

[171]  J. Tennyson,et al.  Hybrid variational–perturbation method for calculating ro-vibrational energy levels of polyatomic molecules , 2014, 1411.6098.

[172]  J. Tennyson,et al.  ExoMol line lists – VII. The rotation–vibration spectrum of phosphine up to 1500 K , 2014, 1410.2917.

[173]  Jonathan Tennyson,et al.  TAU-REX I: A NEXT GENERATION RETRIEVAL CODE FOR EXOPLANETARY ATMOSPHERES , 2014, 1409.2312.

[174]  P. Hajigeorgiou,et al.  Improved direct potential fit analyses for the ground electronic states of the hydrogen halides: HF/DF/TF, HCl/DCl/TCl, HBr/DBr/TBr and HI/DI/TI , 2015 .

[175]  J. Tennyson,et al.  Communication: Visible line intensities of the triatomic hydrogen ion from experiment and theory. , 2014, The Journal of chemical physics.

[176]  Leo C. Yorke,et al.  Exomol molecular line lists - VI. A high temperature line list for phosphorus nitride , 2014, 1504.02804.

[177]  H. J. Hoeijmakers,et al.  A search for TiO in the optical high-resolution transmission spectrum of HD 209458b: Hindrance due to inaccuracies in the line database , 2014, 1411.6017.

[178]  P. Bernath,et al.  CH in stellar atmospheres: an extensive linelist , 2014, 1410.4005.

[179]  Timo Hyppänen,et al.  A line by line based weighted sum of gray gases model for inhomogeneous CO2–H2O mixture in oxy-fired combustion , 2014 .

[180]  James S. A. Brooke,et al.  Line strengths of rovibrational and rotational transitions within the X³Σ⁻ ground state of NH. , 2014, The Journal of chemical physics.

[181]  C. Hill,et al.  High temperature partition functions and thermodynamic data for ammonia and phosphine , 2014 .

[182]  P. Bernath,et al.  IUPAC critical evaluation of the rotational–vibrational spectra of water vapor. Part IV. Energy levels and transition wavenumbers for D216O, D217O, and D218O , 2014 .

[183]  J. Tennyson,et al.  Spectrum of hot methane in astronomical objects using a comprehensive computed line list , 2014, Proceedings of the National Academy of Sciences.

[184]  A. Nikitin,et al.  THEORETICAL HOT METHANE LINE LISTS UP TO T = 2000 K FOR ASTROPHYSICAL APPLICATIONS , 2014 .

[185]  R. S. Ram,et al.  Einstein A-values and oscillator strengths of the A2П–X2Σ+ system of CP , 2014 .

[186]  I. Snellen High-dispersion spectroscopy of extrasolar planets: from CO in hot Jupiters to O2 in exo-Earths , 2014, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.

[187]  R. J. de Kok,et al.  Carbon monoxide and water vapor in the atmosphere of the non-transiting exoplanet HD 179949 b , 2014, 1404.3769.

[188]  J. Tennyson Vibration–rotation transition dipoles from first principles , 2014 .

[189]  Gang Li,et al.  EINSTEIN A COEFFICIENTS AND OSCILLATOR STRENGTHS FOR THE A2Π–X2Σ+ (RED) AND B2Σ+–X2Σ+ (VIOLET) SYSTEMS AND ROVIBRATIONAL TRANSITIONS IN THE X2Σ+ STATE OF CN , 2014 .

[190]  Sergei N. Yurchenko,et al.  ExoMol line lists IV: The rotation-vibration spectrum of methane up to 1500 K , 2014, 1401.4852.

[191]  Jonathan Tennyson,et al.  ExoMol line lists - III. An improved hot rotation-vibration line list for HCN and HNC , 2013, 1311.1328.

[192]  A. Császár,et al.  Analysis of the Rotational–Vibrational States of the Molecular Ion H3+ , 2013 .

[193]  Laurence S. Rothman,et al.  Reference spectroscopic data for hydrogen halides, Part II: The line lists , 2013 .

[194]  S. Tashkun,et al.  Semi-empirical 12C16O2 IR line lists for simulations up to 1500 K and 20,000 cm−1 , 2013 .

[195]  L. Brown,et al.  Re-analysis of ammonia spectra: Updating the HITRAN 14NH3 database , 2013 .

[196]  T. Encrenaz,et al.  Spectroscopy of planetary atmospheres in our Galaxy , 2013 .

[197]  C. Richard,et al.  Zeeman spectroscopy of NiH: Landé factors of three Ω = 3/2 excited electronic states , 2013 .

[198]  Daniel J. Frohman,et al.  ExoMol molecular line lists V: the ro-vibrational spectra of NaCl and KCl , 2013, 1403.7952.

[199]  J. Tennyson,et al.  ExoMol line lists II: The ro-vibrational spectrum of SiO , 2013, 1307.2300.

[200]  R. J. de Kok,et al.  Detection of water absorption in the day side atmosphere of HD 189733 b using ground-based high-resolution spectroscopy at 3.2 μm , 2013, 1307.1133.

[201]  P. Bernath,et al.  Einstein A coefficients for rovibronic lines of the A 2 Π → X 2Σ+ and B′ 2Σ+→ X 2 Σ+ transitions of MgH , 2013 .

[202]  A. Császár,et al.  MARVEL analysis of the rotational-vibrational states of the molecular ions H2D+ and D2H+. , 2013, Physical chemistry chemical physics : PCCP.

[203]  R. S. Ram,et al.  Fourier transform emission spectra of the A2Π → X2Σ+ and B2Σ+ → X2Σ+ band systems of CaH , 2013 .

[204]  D. Crisp,et al.  A SYSTEMATIC RETRIEVAL ANALYSIS OF SECONDARY ECLIPSE SPECTRA. I. A COMPARISON OF ATMOSPHERIC RETRIEVAL TECHNIQUES , 2013, 1304.5561.

[205]  Simon Albrecht,et al.  Detection of carbon monoxide in the high-resolution day-side spectrum of the exoplanet HD 189733b , 2013, 1304.4014.

[206]  Peter F. Bernath,et al.  Line strengths and updated molecular constants for the C2 Swan system , 2012, 1212.2102.

[207]  E. R. Polovtseva,et al.  The HITRAN2012 molecular spectroscopic database , 2013 .

[208]  Vadim Evseev,et al.  High-resolution transmission measurements of CO2 at high temperatures for industrial applications , 2012 .

[209]  C. Hill,et al.  ExoMol line lists – I. The rovibrational spectrum of BeH, MgH and CaH in the X 2Σ+ state , 2012 .

[210]  Attila G. Császár,et al.  MARVEL: Measured active rotational–vibrational energy levels. II. Algorithmic improvements☆ , 2012 .

[211]  J. Tennyson Accurate variational calculations for line lists to model the vibration–rotation spectra of hot astrophysical atmospheres , 2012 .

[212]  A. Soufiani,et al.  Updated band model parameters for H2O, CO2, CH4 and CO radiation at high temperature , 2012 .

[213]  P. Sriramachandran,et al.  The rotational temperatures of Silicon hydride isotopomer lines in sunspot umbrae , 2012 .

[214]  J. Tennyson,et al.  ExoMol: molecular line lists for exoplanet and other atmospheres , 2012, 1204.0124.

[215]  R. S. Ram,et al.  Einstein A coefficients and absolute line intensities for the E-2 Pi-X-2 Sigma(+) transition of CaH , 2012 .

[216]  V. M. Devi,et al.  The 2009 edition of the GEISA spectroscopic database , 2011 .

[217]  L. Kedziora-Chudczer,et al.  Modelling the spectra of planets, brown dwarfs and stars using vstar , 2011, 1109.3748.

[218]  G. Mellau Highly excited rovibrational states of HNC , 2011 .

[219]  J. Tennyson,et al.  A global, high accuracy ab initio dipole moment surface for the electronic ground state of the water molecule. , 2011, The Journal of chemical physics.

[220]  P. Bernath,et al.  Direct fit of experimental ro-vibrational intensities to the dipole moment function: Application to HCl , 2011 .

[221]  S. Tashkun,et al.  CDSD-4000: High-resolution, high-temperature carbon dioxide spectroscopic databank , 2011 .

[222]  L. KuruczRobert Including all the lines11This article is part of a Special Issue on the 10th International Colloquium on Atomic Spectra and Oscillator Strengths for Astrophysical and Laboratory Plasmas. , 2011 .

[223]  J. Carney,et al.  Water temperature and concentration measurements within the expanding blast wave of a high explosive , 2011 .

[224]  R. S. Ram,et al.  Fourier transform emission spectroscopy of the E2Π–X2Σ+ transition of CaH and CaD , 2011 .

[225]  J. Tennyson,et al.  Radiative cooling functions for primordial molecules , 2011, 1103.2957.

[226]  J. Tennyson,et al.  A variationally computed line list for hot NH3 , 2010, 1011.1569.

[227]  G. Mellau Complete experimental rovibrational eigenenergies of HCN up to 6880 cm(-1) above the ground state. , 2010, The Journal of chemical physics.

[228]  P. Bernath,et al.  IUPAC Critical Evaluation of the Rotational-Vibrational Spectra of Water Vapor. Part II. Energy Levels and Transition Wavenumbers for HD16O, HD17O, and HD18O , 2010 .

[229]  Jonathan Tennyson,et al.  Virtual Atomic and Molecular Data Centre , 2010 .

[230]  Jonathan Tennyson,et al.  HITEMP, the high-temperature molecular spectroscopic database , 2010 .

[231]  P. Bernath,et al.  CRIRES spectroscopy and empirical line-by-line identification of FeH molecular absorption in an M dwarf , , 2010, 1007.4116.

[232]  R. Tolchenov,et al.  A high accuracy computed line list for the HDO molecule , 2010 .

[233]  T. Sochi,et al.  A computed line list for the H2D+ molecular ion , 2010, 1002.2073.

[234]  P. Bernath,et al.  IUPAC critical evaluation of the rotational-vibrational spectra of water vapor. Part I—Energy levels and transition wavenumbers , 2013 .

[235]  P. Bernath Molecular astronomy of cool stars and sub-stellar objects , 2009, 0912.5085.

[236]  E. Baron,et al.  Time-dependent radiative transfer with PHOENIX , 2009, 0907.1441.

[237]  P. Bernath,et al.  IUPAC critical evaluation of the rotational–vibrational spectra of water vapor. Part I—Energy levels and transition wavenumbers for H217O and H218O , 2009 .

[238]  C. Richard,et al.  LABORATORY MEASUREMENTS OF NiH BY FOURIER TRANSFORM DISPERSED FLUORESCENCE , 2009 .

[239]  S. P. Bagare,et al.  Presence of LaO, ScO and VO Molecular Lines in Sunspot Umbral Spectra , 2008 .

[240]  J. Tennyson,et al.  A H13CN/HN13C linelist, model atmospheres and synthetic spectra for carbon stars , 2008, 0807.0717.

[241]  S. P. Bagare,et al.  IDENTIFICATION OF BERYLLIUM HYDRIDE ISOTOPOMER LINES IN SUNSPOT UMBRAL SPECTRA , 2008 .

[242]  S. Calcutt,et al.  The NEMESIS planetary atmosphere radiative transfer and retrieval tool , 2008 .

[243]  P. Jensen,et al.  Theoretical ROVibrational Energies (TROVE) : A robust numerical approach to the calculation of rovibrational energies for polyatomic molecules , 2007 .

[244]  Jonathan Tennyson,et al.  MARVEL: measured active rotational-vibrational energy levels , 2007 .

[245]  Laurence S. Rothman,et al.  Einstein A-coefficients and statistical weights for molecular absorption transitions in the HITRAN database , 2006 .

[246]  R. S. Ram,et al.  Low-N lines of the A6sigma+-X6sigma+ (1,0) band of CrH. , 2006, Physical chemistry chemical physics : PCCP.

[247]  P. Bernath,et al.  High-Resolution Infrared Measurements of H2O and SiO in Sunspots , 2006 .

[248]  R. Tolchenov,et al.  A high-accuracy computed water line list , 2006, astro-ph/0601236.

[249]  Gang Li,et al.  The HITRAN 2008 molecular spectroscopic database , 2005 .

[250]  Jonathan Tennyson,et al.  Water Production Rates, Rotational Temperatures, and Spin Temperatures in Comets C/1999 H1 (Lee), C/1999 S4, and C/2001 A2 , 2005 .

[251]  R. S. Ram,et al.  Spectroscopic Constants, Abundances, and Opacities of the TiH Molecule , 2004, astro-ph/0411680.

[252]  J. Tennyson,et al.  Calculated spectra for HeH+ and its effect on the opacity of cool metal‐poor stars , 2004, astro-ph/0411267.

[253]  J. Tennyson,et al.  Water production and release in Comet 153P/Ikeya-Zhang (C/2002 C1): accurate rotational temperature retrievals from hot-band lines near 2.9-μm , 2004 .

[254]  P. Cheng,et al.  Emission observation for electronically excited state SO(c1Σ−) in gas phase , 2002 .

[255]  P. Bernath,et al.  Laboratory Spectroscopy of Hot Water near 2 Microns and Sunspot Spectroscopy in the H-Band Region , 2002 .

[256]  P. Bernath,et al.  Using Laboratory Spectroscopy to Identify Lines in the K- and L-Band Spectrum of Water in a Sunspot , 2000 .

[257]  D. Schwenke Opacity of TiO from a coupled electronic state calculation parametrized by abinitio and experimental data , 1998 .

[258]  B. Plez A new TiO line list , 1998 .

[259]  Zobov,et al.  High-Temperature Rotational Transitions of Water in Sunspot and Laboratory Spectra , 1997, Journal of molecular spectroscopy.

[260]  P. Hauschildt,et al.  MODEL ATMOSPHERES OF VERY LOW MASS STARS AND BROWN DWARFS , 1997 .

[261]  P. Bernath,et al.  Water on the sun: line assignments based on variational calculations. , 1997, Science.

[262]  Harry Partridge,et al.  The determination of an accurate isotope dependent potential energy surface for water from extensive ab initio calculations and experimental data , 1997 .

[263]  J. Tennyson,et al.  Spectroscopic properties of the H{sup +}{sub 3} molecule: A new calculated line list , 1996 .

[264]  A. Irwin The partition functions of JANAF polyatomic molecules that significantly affect the stellar atmospheric equation of state , 1988 .

[265]  A. Sauval,et al.  A set of partition functions and equilibrium constants for 300 diatomic molecules of astrophysical interest , 1984 .

[266]  A. J. Merer,et al.  Laser spectroscopy of VO: Analysis of the rotational and hyperfine structure of the C4Σ−-X4Σ− (0, 0) band , 1982 .

[267]  A. Irwin Polynomial partition function approximations of 344 atomic and molecular species. , 1981 .

[268]  G. C. Joshi,et al.  (A-X) system of SiO in sunspots , 1979 .

[269]  G. C. Joshi,et al.  On the presence of SH in the sunspot spectrum , 1979 .

[270]  P. Sotirovskii The Molecular Spectrum of Sunspot Umbrae , 1971 .