Near-Field Thermal Radiation: Recent Progress and Outlook
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[1] Liping Wang,et al. Switchable wavelength-selective and diffuse metamaterial absorber/emitter with a phase transition spacer layer , 2014 .
[2] Liping Wang,et al. Near-field radiative heat transfer between doped silicon nanowire arrays , 2013 .
[3] M. Kardar,et al. Trace formulas for nonequilibrium Casimir interactions, heat radiation, and heat transfer for arbitrary objects , 2012, 1207.0374.
[4] Gang Chen,et al. Thermal near-field radiative transfer between two spheres , 2008, 0909.0765.
[5] Sheng Shen,et al. Tuning near field radiation by doped silicon , 2013 .
[6] M. Pinar Mengüç,et al. Analysis of near-field radiation transfer within nano-gaps using FDTD method , 2014 .
[7] M. Pinar Mengüç,et al. Thermal Impacts on the Performance of Nanoscale-Gap Thermophotovoltaic Power Generators , 2011, IEEE Transactions on Energy Conversion.
[8] M. Raschke,et al. Thermal infrared near-field spectroscopy. , 2012, Nano letters.
[9] Richard Z. Zhang,et al. Near-field thermal radiation between hyperbolic metamaterials: Graphite and carbon nanotubes , 2013 .
[10] S. Komiyama,et al. A sensitive near-field microscope for thermal radiation. , 2010, The Review of scientific instruments.
[11] Gang Chen,et al. Surface phonon polaritons mediated energy transfer between nanoscale gaps. , 2009, Nano letters.
[12] L. Novotný,et al. Friction forces arising from fluctuating thermal fields , 2004 .
[13] Mathieu Francoeur,et al. Near-field radiative transfer based thermal rectification using doped silicon , 2011 .
[14] H. Callen,et al. Irreversibility and Generalized Noise , 1951 .
[15] Zhuomin M. Zhang,et al. Measurements and Modeling of the Spectral and Directional Radiative Properties of Micro/Nanostructured Materials , 2013 .
[16] S. Shen,et al. Broadband near-field radiative thermal emitter/absorber based on hyperbolic metamaterials: Direct numerical simulation by the Wiener chaos expansion method , 2013 .
[17] Richard Z. Zhang,et al. Near-Perfect Photon Tunneling by Hybridizing Graphene Plasmons and Hyperbolic Modes , 2014 .
[18] M. Pinar Mengüç,et al. Special Issue on Nano/Microscale Radiative Transfer , 2007 .
[19] Bjørn Petter Jelle,et al. Traditional, state-of-the-art and future thermal building insulation materials and solutions Prope , 2011 .
[20] Philippe Ben-Abdallah,et al. Near-field thermal transistor. , 2013, Physical review letters.
[21] Joël Chevrier,et al. Fast nanoscale heat-flux modulation with phase-change materials , 2011 .
[22] M. Pinar Mengüç,et al. Coexistence of multiple regimes for near-field thermal radiation between two layers supporting surface phonon polaritons in the infrared , 2011 .
[23] S. Fan,et al. Fluctuational electrodynamics calculations of near-field heat transfer in non-planar geometries: A brief overview , 2014 .
[24] M. Fatih Erden,et al. Heat Assisted Magnetic Recording , 2008, Proceedings of the IEEE.
[25] R. Carminati,et al. Coherent emission of light by thermal sources , 2002, Nature.
[26] Z. Jacob,et al. Quantum nanophotonics using hyperbolic metamaterials , 2012, 1204.5529.
[27] Gang Chen,et al. Near-field radiative heat transfer between a sphere and a substrate , 2008, 0909.0784.
[28] O ct 2 01 3 Electromagnetic properties of thin metallic films , 2014, 1310.2224.
[29] A. Kittel,et al. Enhanced near-field heat flow of a monolayer dielectric island. , 2013, Physical review letters.
[30] Y. Bayazitoglu,et al. Nanorod near-field radiative heat exchange analysis , 2011 .
[31] D B Tanner,et al. Near-field radiative heat transfer between macroscopic planar surfaces. , 2011, Physical review letters.
[32] Jean-Jacques Greffet,et al. ENHANCED RADIATIVE HEAT TRANSFER AT NANOMETRIC DISTANCES , 2002, Proceeding of Heat Transfer and Transport Phenomena in Microscale.
[33] S. Fan,et al. Rectification of evanescent heat transfer between dielectric-coated and uncoated silicon carbide plates , 2012 .
[34] R. Carminati,et al. Surface electromagnetic waves thermally excited: Radiative heat transfer, coherence properties and Casimir forces revisited in the near field , 2005, physics/0504068.
[35] D. Bogy,et al. Maskless Plasmonic Lithography at 22 nm Resolution , 2011, Scientific reports.
[36] Spectral frustration and spatial coherence in thermal near-field spectroscopy , 2014 .
[37] Steven G. Johnson,et al. Fluctuating-surface-current formulation of radiative heat transfer for arbitrary geometries , 2012, 1206.1772.
[38] Riccardo Messina,et al. Heat superdiffusion in plasmonic nanostructure networks. , 2013, Physical review letters.
[39] S. Lamoreaux. The Casimir force: background, experiments, and applications , 2004 .
[40] A. Volokitin,et al. Near-field radiative heat transfer between closely spaced graphene and amorphous SiO 2 , 2011, 1409.0795.
[41] Marin Soljacić,et al. Thermal emission and design in one-dimensional periodic metallic photonic crystal slabs. , 2006, Physical review. E, Statistical, nonlinear, and soft matter physics.
[42] G. L. Klimchitskaya,et al. The Casimir force between real materials: Experiment and theory , 2009, 0902.4022.
[43] Casimir-lifshitz force out of thermal equilibrium and asymptotic nonadditivity. , 2006, Physical review letters.
[44] Y. Xuan,et al. Thermal rectification based on thermochromic materials , 2013 .
[45] Michal Lipson,et al. Near-field radiative cooling of nanostructures. , 2012, Nano letters.
[46] Akhlesh Lakhtakia,et al. STRONG AND WEAK FORMS OF THE METHOD OF MOMENTS AND THE COUPLED DIPOLE METHOD FOR SCATTERING OF TIME-HARMONIC ELECTROMAGNETIC FIELDS , 1992 .
[47] J. Rubí,et al. Near-field thermodynamics: Useful work, efficiency, and energy harvesting , 2014, 1404.2017.
[48] M. Schnell,et al. Infrared-spectroscopic nanoimaging with a thermal source. , 2011, Nature materials.
[49] Energy streamlines in near-field radiative heat transfer between hyperbolic metamaterials. , 2014, Optics express.
[50] Svend-Age Biehs,et al. Hyperbolic metamaterials as an analog of a blackbody in the near field. , 2011, Physical review letters.
[51] Zhuomin M. Zhang,et al. Application Conditions of Effective Medium Theory in Near-Field Radiative Heat Transfer Between Multilayered Metamaterials , 2014 .
[52] Riccardo Messina,et al. Graphene-based photovoltaic cells for near-field thermal energy conversion , 2012, Scientific Reports.
[53] Constantin Simovski,et al. Giant radiation heat transfer through micron gaps , 2011, 1103.0407.
[54] Zhuomin M. Zhang. Nano/Microscale Heat Transfer , 2007 .
[55] A. Kittel,et al. Near-field thermal imaging of nanostructured surfaces , 2008, 1103.3059.
[56] P. Chapuis,et al. Strong tip-sample coupling in thermal radiation scanning tunneling microscopy , 2013, 1311.1983.
[57] B. Raeymaekers,et al. Tuning near-field thermal radiative properties by quantifying sensitivity of Mie resonance-based metamaterial design parameters , 2013 .
[58] General theory of electromagnetic fluctuations near a homogeneous surface in terms of its reflection amplitudes , 2007, 0706.0779.
[59] Liping Wang,et al. Radiation-based near-field thermal rectification with phase transition materials , 2013 .
[60] JB Pendry. Shearing the vacuum—quantum friction , 1997 .
[61] F. Capasso,et al. Quantum Mechanical Actuation of Microelectromechanical Systems by the Casimir Force , 2001, Science.
[62] Vacuum thermal switch made of phase transition materials considering thin film and substrate effects , 2014, 1410.1269.
[63] Zubin Jacob,et al. Broadband super-planckian thermal emission from hyperbolic metamaterials , 2013, CLEO: 2013.
[64] Bong Jae Lee,et al. Near-field thermal radiation between graphene-covered doped silicon plates. , 2013, Optics express.
[65] J. Greffet,et al. Nanoscale heat flux between nanoporous materials. , 2011, Optics express.
[66] Svend-Age Biehs,et al. Nanoscale Radiative Heat Transfer and Its Applications , 2012 .
[67] John B. Pendry,et al. Radiative exchange of heat between nanostructures , 1999 .
[68] K. Parka,et al. Performance analysis of near-field thermophotovoltaic devices considering absorption distribution , 2007 .
[69] U. Mohideen,et al. Precision Measurement of the Casimir Force from 0.1 to 0.9 μm , 1998, physics/9805038.
[70] Steven G. Johnson,et al. Effectiveness of thin films in lieu of hyperbolic metamaterials in the near field. , 2013, Physical review letters.
[71] Steven G. Johnson,et al. Frequency-selective near-field radiative heat transfer between photonic crystal slabs: a computational approach for arbitrary geometries and materials. , 2011, Physical review letters.
[72] C. Luo,et al. Thermal radiation from photonic crystals: a direct calculation. , 2004, Physical review letters.
[73] F. Capasso,et al. Measured long-range repulsive Casimir–Lifshitz forces , 2009, Nature.
[74] M. Eich,et al. Large penetration depth of near-field heat flux in hyperbolic media , 2014, 1403.5443.
[75] Ivan Celanovic,et al. Overcoming the black body limit in plasmonic and graphene near-field thermophotovoltaic systems. , 2012, Optics express.
[76] Juan Carlos Cuevas,et al. Enhancement of near-field radiative heat transfer using polar dielectric thin films. , 2015, Nature nanotechnology.
[77] Steven G. Johnson,et al. Fluctuating-surface-current formulation of radiative heat transfer: Theory and applications , 2013, 1304.1215.
[78] Lifshitz theory of van der Waals pressure in dissipative media , 2010, 1011.5433.
[79] A. Narayanaswamy,et al. Theory of thermal nonequilibrium entropy in near-field thermal radiation , 2013 .
[80] The Thermal Discrete Dipole Approximation (T-DDA) for near-field radiative heat transfer simulations in three-dimensional arbitrary geometries , 2013, 1308.6262.
[81] Z.M. Zhang,et al. Lateral Shifts in Near-Field Thermal Radiation with Surface Phonon Polaritons , 2008 .
[82] J. Chevrier,et al. Plasmon enhanced near-field radiative heat transfer for graphene covered dielectrics , 2012, 1201.1824.
[83] Y. Xuan. An overview of micro/nanoscaled thermal radiation and its applications , 2014 .
[84] E. A. Vinogradov,et al. Fluctuating electromagnetic fields of solids , 2011 .
[85] S. Shen. EXPERIMENTAL STUDIES OF RADIATIVE HEAT TRANSFER BETWEEN BODIES AT SMALL SEPARATIONS , 2013 .
[86] Gang Chen,et al. Surface modes for near field thermophotovoltaics , 2003 .
[87] Lu Hu,et al. Near-field Thermal Radiation Between Two Closely Spaced Glass Plates Exceeding Planck’s Blackbody Radiation Law , 2008 .
[88] Y. Cordier,et al. Tuning the electromagnetic local density of states in graphene-covered systems via strong coupling with graphene plasmons , 2012, 1211.3145.
[89] Pramod Reddy,et al. Radiative Heat Transfer at the Nanoscale , 2016 .
[90] Shanhui Fan,et al. Thermal rectification through vacuum. , 2010, Physical review letters.
[91] Yong Shuai,et al. Thermophotovoltaic emitters based on a two-dimensional grating/thin-film nanostructure , 2013 .
[92] S. Reynaud,et al. Radiative heat transfer between two dielectric nanogratings in the scattering approach , 2012 .
[93] Hao Wang,et al. Perfect selective metamaterial solar absorbers. , 2013, Optics express.
[94] Yuri S. Kivshar,et al. Engineered optical nonlocality in nanostructured metamaterials , 2011, 1103.3847.
[95] Shanhui Fan,et al. Numerically exact calculation of electromagnetic heat transfer between a dielectric sphere and plate , 2011 .
[96] Zhuomin M. Zhang,et al. Performance of Near-Field Thermophotovoltaic Cells Enhanced With a Backside Reflector , 2014 .
[97] Y. Xuan,et al. Theory of near-field radiative heat transfer for stratified magnetic media , 2011 .
[98] J. Greffet,et al. Mesoscopic description of radiative heat transfer at the nanoscale. , 2010, Physical review letters.
[99] A.I.Volokitin,et al. Radiative heat transfer between nanostructures , 2006 .
[100] Zhuomin M. Zhang,et al. Thermal radiative properties of metamaterials and other nanostructured materials: A review , 2009 .
[101] M. Raschke,et al. The thermal near-field: Coherence, spectroscopy, heat-transfer, and optical forces , 2013 .
[102] A. Volokitin,et al. Theory of the interaction forces and the radiative heat transfer between moving bodies , 2008 .
[103] D. Drosdoff,et al. Transverse Electric Mode for Near‐Field Radiative Heat Transfer in Graphene–Metamaterial Systems , 2014 .
[104] A. N. Grigorenko,et al. Graphene plasmonics , 2012, Nature Photonics.
[105] Steven G. Johnson,et al. Modeling near-field radiative heat transfer from sharp objects using a general three-dimensional numerical scattering technique , 2012 .
[106] S. Reynaud,et al. Enhanced radiative heat transfer between nanostructured gold plates , 2012, 1203.1496.
[107] Jun Yu,et al. A MEMS Device Capable of Measuring Near-Field Thermal Radiation between Membranes , 2013, Sensors.
[108] Soumyadipta Basu,et al. Direct calculation of energy streamlines in near-field thermal radiation , 2011 .
[109] Zongfu Yu,et al. Enhancing far-field thermal emission with thermal extraction , 2013, Nature Communications.
[110] T. Králík,et al. Strong near-field enhancement of radiative heat transfer between metallic surfaces. , 2012, Physical review letters.
[111] Shanhui Fan,et al. Ultrahigh contrast and large-bandwidth thermal rectification in near-field electromagnetic thermal transfer between nanoparticles , 2014, Optics & Photonics - NanoScience + Engineering.
[112] M. Antezza,et al. Casimir-Lifshitz force out of thermal equilibrium and heat transfer between arbitrary bodies , 2010, 1012.5183.
[113] Z. M. Zhang,et al. Parametric optimization of dielectric functions for maximizing nanoscale radiative transfer , 2009 .
[114] Richard Z. Zhang,et al. Near-field radiative heat transfer with doped-silicon nanostructured metamaterials , 2014 .
[115] Zhuomin M. Zhang,et al. Wideband tunable omnidirectional infrared absorbers based on doped-silicon nanowire arrays , 2013 .
[116] Duane C. Karns,et al. Heat-assisted magnetic recording by a near-field transducer with efficient optical energy transfer , 2009 .
[117] Steven G. Johnson,et al. Fluctuation-Induced Phenomena in Nanoscale Systems: Harnessing the Power of Noise , 2012, Proceedings of the IEEE.
[118] P. Chapuis,et al. Blackbody spectrum revisited in the near field. , 2013, Physical review letters.
[119] R. Carminati,et al. Nanoscale radiative heat transfer between a small particle and a plane surface , 2001 .
[120] Jean-Jacques Greffet,et al. Thermal radiation scanning tunnelling microscopy , 2006, Nature.
[121] S Stringari,et al. Measurement of the temperature dependence of the Casimir-Polder force. , 2007, Physical review letters.
[122] Ultrafast modulation of near-field heat transfer with tunable metamaterials , 2012, 1212.6129.
[123] Bong Jae Lee,et al. Near-Field Radiation Calculated With an Improved Dielectric Function Model for Doped Silicon , 2010 .
[124] K. Hanamura,et al. FDTD Simulation of Near-Field Radiative Heat Transfer between Thin Films Supporting Surface Phonon Polaritons: Lessons Learned , 2013 .
[125] Clifton G. Fonstad,et al. Enhanced photogeneration of carriers in a semiconductor via coupling across a nonisothermal nanoscale vacuum gap , 2001 .
[126] Bo N. J. Persson,et al. Near-field radiative heat transfer and noncontact friction , 2007 .
[127] Svend-Age Biehs,et al. Phase-change radiative thermal diode , 2013, 1307.3154.
[128] S. Hammond. An overview of microRNAs. , 2015, Advanced drug delivery reviews.
[129] Eric E Fullerton,et al. Enhancing spontaneous emission rates of molecules using nanopatterned multilayer hyperbolic metamaterials. , 2014, Nature nanotechnology.
[130] Liping Wang,et al. Electrically-gated near-field radiative thermal transistor , 2015, 1501.00479.
[131] J. Stewart Aitchison,et al. Infrared magnetic response in a random silicon carbide micropowder , 2009 .
[132] Ceji Fu,et al. Nanoscale radiation heat transfer for silicon at different doping levels , 2006 .
[133] J. M. Zhao,et al. Electromagnetic energy storage and power dissipation in nanostructures , 2015 .
[134] A. Majumdar,et al. Nanoscale thermal transport , 2003, Journal of Applied Physics.
[135] M. Pinar Mengüç,et al. Thermal Radiation Heat Transfer , 2020 .
[136] Svend-Age Biehs,et al. On the limits of the effective description of hyperbolic materials in the presence of surface waves , 2013, 1302.3719.
[137] Bong Jae Lee,et al. Energy pathways in nanoscale thermal radiation , 2007 .
[138] S. M. Rytov,et al. Principles of statistical radiophysics , 1987 .
[139] Sy-Bor Wen. Direct Numerical Simulation of Near Field Thermal Radiation Based on Wiener Chaos Expansion of Thermal Fluctuating Current , 2010 .
[140] Linhua Liu,et al. Role of surface plasmon polaritons on the enhancement of the near-field thermal radiation from fishnet metamaterial , 2014 .
[141] Philippe Ben-Abdallah,et al. Noncontact heat transfer between two metamaterials , 2010 .
[142] Philippe Ben-Abdallah,et al. Many-body radiative heat transfer theory. , 2011, Physical review letters.
[143] K. Cen,et al. Enhanced Critical Heat Flux During Quenching of Extremely Dilute Aqueous Colloidal Suspensions With Graphene Oxide Nanosheets , 2013 .
[144] M. Lipson,et al. Demonstration of strong near-field radiative heat transfer between integrated nanostructures. , 2014, Nano letters.
[145] M. Francoeur,et al. Near-field radiative heat transfer between metamaterial thin films. , 2014, Optics letters.
[146] Anastassios Mavrokefalos,et al. Nanoscale thermal radiation between two gold surfaces , 2012 .
[147] Conservative–dissipative forces and heating mediated by fluctuation electromagnetic field: Two plates in relative nonrelativistic motion , 2009, 0904.3053.
[148] Wolfgang Müller-Hirsch,et al. Near-field heat transfer in a scanning thermal microscope. , 2005, Physical review letters.
[149] K. Joulain. Near-field heat transfer: A radiative interpretation of thermal conduction , 2008 .
[150] Zhuomin M. Zhang,et al. Graphene-assisted near-field radiative heat transfer between corrugated polar materials , 2014 .
[151] Zhuomin M. Zhang,et al. FUNDAMENTALS AND APPLICATIONS OF NEAR-FIELD RADIATIVE ENERGY TRANSFER , 2013 .
[152] S. Shen,et al. Near-field radiative heat transfer for Si based metamaterials , 2014 .
[153] Alfons G. Hoekstra,et al. Accuracy of the discrete dipole approximation for simulation of optical properties of gold nanoparticles , 2010 .
[154] Karthik Sasihithlu,et al. Near-field radiative transfer between two unequal sized spheres with large size disparities. , 2014, Optics express.
[155] Jean-Jacques Greffet,et al. Effects of spatial dispersion in near-field radiative heat transfer between two parallel metallic surfaces , 2008, 0802.1899.
[156] Z. Jacob,et al. Thermal hyperbolic metamaterials , 2013 .
[157] Hong Ye,et al. MEASUREMENTS OF RADIATIVE PROPERTIES OF ENGINEERED MICRO-/NANOSTRUCTURES , 2013 .
[158] Zhuomin M. Zhang,et al. Ultrasmall penetration depth in nanoscale thermal radiation , 2009 .
[159] Z. M. Zhang,et al. Thermal Rectification Enabled by Near-Field Radiative Heat Transfer Between Intrinsic Silicon and a Dissimilar Material , 2013 .
[160] Abdullah Eroglu. Wave Propagation and Radiation in Gyrotropic and Anisotropic Media , 2010 .
[161] Yu-Bin Chen,et al. Microscale radiation in thermophotovoltaic devices—A review , 2007 .
[162] Mehran Kardar,et al. Nonequilibrium electromagnetic fluctuations: heat transfer and interactions. , 2011, Physical review letters.
[163] Jordan A. Katine,et al. Magnetic recording at 1.5 Pb m −2 using an integrated plasmonic antenna , 2010 .
[164] Ceji Fu,et al. Review of near‐field thermal radiation and its application to energy conversion , 2009 .
[165] Philippe Ben-Abdallah,et al. Modulation of near-field heat transfer between two gratings , 2011, 1105.3745.
[166] Gang Chen,et al. Applied Physics Reviews Nanoscale Thermal Transport. Ii. 2003–2012 , 2022 .