Symmetry Dependence of the Continuum Coupling in the Chemi-ionization of Li(22S1/2) by He(23S1, 23PJ)
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[1] F. Stienkemeier,et al. Spin-state-controlled chemi-ionization reactions between metastable helium atoms and ground-state lithium atoms. , 2022, The Journal of chemical physics.
[2] F. Stienkemeier,et al. Preparation of individual magnetic sub-levels of 4He(23S1) in a supersonic beam using laser optical pumping and magnetic hexapole focusing. , 2021, The Review of scientific instruments.
[3] S. Willitsch,et al. A novel crossed-molecular-beam experiment for investigating reactions of state- and conformationally selected strong-field-seeking molecules , 2021, Molecular Physics.
[4] F. Pirani,et al. Quantum-State Controlled Reaction Channels in Chemi-ionization Processes: Radiative (Optical–Physical) and Exchange (Oxidative–Chemical) Mechanisms , 2020, Accounts of chemical research.
[5] F. Pirani,et al. General treatment for stereo-dynamics of state-to-state chemi-ionization reactions , 2020, Communications Chemistry.
[6] L. Cederbaum,et al. Ab initio complex potential energy curves of the He*(1s2p1P)-Li dimer. , 2020, The Journal of chemical physics.
[7] M. Mudrich,et al. Charge-exchange Dominates Long-range Interatomic Coulombic Decay of Excited Metal-doped He Nanodroplets. , 2019, The journal of physical chemistry letters.
[8] F. Stienkemeier,et al. Suppression of Penning ionization by orbital angular momentum conservation , 2019, 1909.01694.
[9] A. Osterwalder,et al. Energy and orientation independence of the channel branching in Ne* + ND3 chemi-ionisation. , 2019, Physical chemistry chemical physics : PCCP.
[10] F. Stienkemeier,et al. Optical Quenching of Metastable Helium Atoms using Excitation to the 4P State , 2019, Physical Review Applied.
[11] M. Mudrich,et al. Penning collisions between supersonically expanded metastable He atoms and laser-cooled Li atoms. , 2019, The Journal of chemical physics.
[12] N. Moiseyev,et al. The effect of large autoionization decay rates (resonance widths) on cold molecular cross-sections and the reflection phenomenon , 2018, Chemical Physics.
[13] F. Pirani,et al. Adiabatic and Nonadiabatic Effects in the Transition States of State to State Autoionization Processes. , 2018, Physical review letters.
[14] P. Brumer,et al. Quantum-state-controlled channel branching in cold Ne(3P2)+Ar chemi-ionization , 2018, Nature Chemistry.
[15] A. Osterwalder,et al. Stereodynamics of Ne(3P2) reacting with Ar, Kr, Xe, and N2. , 2018, The Journal of chemical physics.
[16] J. Jankunas,et al. Energy Dependent Stereodynamics of the Ne(^{3}P_{2})+Ar Reaction. , 2017, Physical review letters.
[17] C. Koch,et al. Molecular hydrogen interacts more strongly when rotationally excited at low temperatures leading to faster reactions. , 2015, Nature chemistry.
[18] P. Żuchowski,et al. Ab initio interaction potentials and scattering lengths for ultracold mixtures of metastable helium and alkali-metal atoms , 2015, 1501.00884.
[19] J. Y. Zhang,et al. Long-range interactions between excited helium and alkali-metal atoms , 2012 .
[20] A. Henson,et al. Observation of Resonances in Penning Ionization Reactions at Sub-Kelvin Temperatures in Merged Beams , 2012, Science.
[21] C. cohen-tannoudji,et al. Cold and trapped metastable noble gases , 2011, 1110.1361.
[22] L. Cederbaum,et al. Dependence of interatomic decay widths on the symmetry of the decaying state: Analytical expressions and ab initio results , 2010 .
[23] L. Cederbaum,et al. High activity of helium droplets following ionization of systems inside those droplets , 2007, physics/0703267.
[24] Calvin Jary,et al. An accurate analytic potential function for ground-state N2 from a direct-potential-fit analysis of spectroscopic data. , 2006, The Journal of chemical physics.
[25] J. McNamara,et al. Degenerate Bose-Fermi mixture of metastable atoms. , 2006, Physical review letters.
[26] W. Ertmer,et al. Collisional properties of cold spin-polarized metastable neon atoms. , 2005, Physical review letters.
[27] W. Kaelin,et al. A Bose-Einstein Condensate of Metastable Atoms , 2001, Science.
[28] C. cohen-tannoudji,et al. Bose-Einstein Condensation of Metastable Helium , 2001, Physical review letters.
[29] M. Movre,et al. Theoretical investigation of the autoionization process in molecular collision complexes: He*(2 3S)+Li(2 2S)→He+Li++e− , 2000 .
[30] S. Rolston,et al. SPIN POLARIZATION AND QUANTUM-STATISTICAL EFFECTS IN ULTRACOLD IONIZING COLLISIONS , 1999 .
[31] Ido,et al. Quantum statistical effect on ionizing collisions of ultracold metastable Kr isotopes. , 1995, Physical review. A, Atomic, molecular, and optical physics.
[32] P. E. Siska,et al. Molecular-beam studies of Penning ionization , 1993 .
[33] M. Müller,et al. Experimental and theoretical studies of simple attractive Penning ionization systemsag , 1990 .
[34] M. Müller,et al. Substantial angular dependence of the electron energy spectra for attractive penning ionization systems: He(23S, 21S)+Li(22S) , 1989 .
[35] D. Varshalovich,et al. Quantum Theory of Angular Momentum , 1988 .
[36] A. Yencha,et al. The interaction of metastable helium atoms with alkali atoms , 1987 .
[37] H. Hotop,et al. Polarization effects in ionizing thermal energy collisions of laser-excited Ne(3p3D3) atoms with Ar atoms , 1985 .
[38] R. Berry. The theory of Penning ionization. , 1974, Radiation research.
[39] M. Muller,et al. Experimental and theoretical studies of simple attractive Penning ionization systems , 2001 .
[40] H. Hotop,et al. IONIZING COLLISIONS OF LASER-EXCITED RARE GAS ATOMS , 1985 .
[41] William H. Miller,et al. Theory of Penning Ionization. I. Atoms , 1970 .