8 Controlling Thermal Radiation with Surface Waves
323
22. I. Celanovic, D. Perreault, J. Kassakian, Resonant-cavity enhanced thermal emission. Phys.
Rev. B 72, 075127 (2005)
23. W.A. Challener, C. Peng, A.V. Itagi, D. Kams, W. Peng, Y. Peng, X. Yang, X. Zhu, N.J.
Gokemeijer, Y.T. Hsia, G. Ju, E. Rottmayer, M.A. Seigler, E.C. Gage, Heat-assisted magnetic
recording by a near-field transducer with efficient optical energy transfer. Nat. Photonics 3,
220–224 (2009)
24. D.L.C. Chan, M. Soljacic, J.D. Joannopoulos, Thermal emission and design in 2D-periodic
metallic photonic crystal slabs. Opt. Express 14, 8785–8796 (2006)
25. P.O. Chapuis, S. Volz, C. Henkel, K. Joulain, J.J. Greffet, Effects of spatial dispersion in nearfield radiative heat transfer between two parallel metallic surfaces. Phys. Rev. B 77, 035431
(2008)
26. P.O. Chapuis, M. Laroche, S. Volz, J.J. Greffet, Near-field induction heating of metallic
nanoparticles due to infrared magnetic dipole contribution. Phys. Rev. B 77, 125402 (2008)
27. W.C. Chew, Waves and Fields in Inhomogeneous Media (IEEE Press, Piscataway, 1995)
28. T.J. Coutts, A review of progress in thermophotovoltaic generation of electricity. Renew.
Sustain. Energy Rev. 3, 77–184 (1999)
29. E. Cravalho, C. Tien, R. Caren, Effect of small spacings on radiative transfer between 2
dielectrics. J. Heat Transfer 89, 351 (1967)
30. N. Dahan, A. Niv, G. Biener, V. Kleiner, E. Hasman, Space-variant polarization manipulation
of a thermal emission by a SiO 2 subwavelength grating supporting surface phonon-polaritons.
Appl. Phys. Lett. 86, 191102 (2005)
31. N. Dahan, A. Niv, G. Biener, V. Kleiner, E. Hasman, Thermal image encryption obtained with
a SiO 2 space-variant subwavelength grating supporting surface phonon-polaritons. Opt. Lett.
30, 3195–3197 (2005)
32. N. Dahan, Y. Gorodetski, K. Frischwasser, V. Kleiner, E. Hasman, Geometric Doppler effect:
spin-split dispersion of thermal radiation. Phys. Rev. Lett. 105, 136402 (2010)
33. N. Dahan, A. Niv, G. Biener, Y. Gorodetski, V. Kleiner, E. Hasman, Enhanced coherency of
thermal emission: beyond the limitation imposed by delocalized surface waves. Phys. Rev. B
76, 045427 (2007)
34. S. Datta, Electronic Transport in Mesoscopic Systems (Cambridge University Press, Cambridge, 2002)
35. G.V. Dedkov, A.A. Kyasov, Thermal radiation of nanoparticles occurring at a heated flat
surface in vacuum. Tech. Phys. Lett. 33, 305–308 (2007)
36. M. De Zoysa, T. Asano, K. Mochizuki, A. Oskooi, T. Inoue, S. Noda, Conversion of broadband
to narrowband thermal emission through energy recycling. Nat. Photonics 6, 535–539 (2012)
37. R.S. DiMatteo, P. Greiff, S.L. Finberg, K.A. Young-Waithe, H.K.H. Choy, M.M. Masaki,
C.G. Fonstad, Enhanced photogeneration of carriers in a semiconductor via coupling across
a nonisothermal nanoscale vacuum gap. Appl. Phys. Lett. 79, 1894 (2001)
38. I.A. Dorofeyev, E.A. Vinogradov, Fluctuating electromagnetic fields of solids. Phys. Rep.
504, 75 (2011)
39. J. Drevillon, P. Ben-Abdallah, Ab initio design of coherent thermal sources. J. Appl. Phys.
102, 114305 (2007)
40. S. Enoch, J.J. Simon, L. Escoubas, Z. Elalmy, F. Lemarquis, P. Torchio, G. Albrand, Simple
layer-by-layer photonic crystal for the control of thermal emission. Appl. Phys. Lett. 86,
261101 (2005)
41. C. Fu, Z.M. Zhang, Thermal radiative properties of metamaterials and other nanostructured
materials: a review. Front. Energy Power Eng. China 3, 11–26 (2009)
42. M. Garin, T. Trifonov, A. Rodrguez, R. Alcubilla, F. Marquier, C. Arnold, J.J. Greffet, Improving selective thermal emission properties of three-dimensional macroporous silicon through
porosity tuning. Appl. Phys. Lett. 93, 081913 (2008)
43. J. Goodman, Statistical Optics (Wiley, New York, 1985)
44. J.J. Greffet, M. Nieto-Vesperinas, Field theory for the generalized bidirectional reflectivity:
derivation of Helmholtz’s reciprocity principle and Kirchhoff’s law. J. Opt. Soc. Am. A. 10,
2735 (1998)
323
22. I. Celanovic, D. Perreault, J. Kassakian, Resonant-cavity enhanced thermal emission. Phys.
Rev. B 72, 075127 (2005)
23. W.A. Challener, C. Peng, A.V. Itagi, D. Kams, W. Peng, Y. Peng, X. Yang, X. Zhu, N.J.
Gokemeijer, Y.T. Hsia, G. Ju, E. Rottmayer, M.A. Seigler, E.C. Gage, Heat-assisted magnetic
recording by a near-field transducer with efficient optical energy transfer. Nat. Photonics 3,
220–224 (2009)
24. D.L.C. Chan, M. Soljacic, J.D. Joannopoulos, Thermal emission and design in 2D-periodic
metallic photonic crystal slabs. Opt. Express 14, 8785–8796 (2006)
25. P.O. Chapuis, S. Volz, C. Henkel, K. Joulain, J.J. Greffet, Effects of spatial dispersion in nearfield radiative heat transfer between two parallel metallic surfaces. Phys. Rev. B 77, 035431
(2008)
26. P.O. Chapuis, M. Laroche, S. Volz, J.J. Greffet, Near-field induction heating of metallic
nanoparticles due to infrared magnetic dipole contribution. Phys. Rev. B 77, 125402 (2008)
27. W.C. Chew, Waves and Fields in Inhomogeneous Media (IEEE Press, Piscataway, 1995)
28. T.J. Coutts, A review of progress in thermophotovoltaic generation of electricity. Renew.
Sustain. Energy Rev. 3, 77–184 (1999)
29. E. Cravalho, C. Tien, R. Caren, Effect of small spacings on radiative transfer between 2
dielectrics. J. Heat Transfer 89, 351 (1967)
30. N. Dahan, A. Niv, G. Biener, V. Kleiner, E. Hasman, Space-variant polarization manipulation
of a thermal emission by a SiO 2 subwavelength grating supporting surface phonon-polaritons.
Appl. Phys. Lett. 86, 191102 (2005)
31. N. Dahan, A. Niv, G. Biener, V. Kleiner, E. Hasman, Thermal image encryption obtained with
a SiO 2 space-variant subwavelength grating supporting surface phonon-polaritons. Opt. Lett.
30, 3195–3197 (2005)
32. N. Dahan, Y. Gorodetski, K. Frischwasser, V. Kleiner, E. Hasman, Geometric Doppler effect:
spin-split dispersion of thermal radiation. Phys. Rev. Lett. 105, 136402 (2010)
33. N. Dahan, A. Niv, G. Biener, Y. Gorodetski, V. Kleiner, E. Hasman, Enhanced coherency of
thermal emission: beyond the limitation imposed by delocalized surface waves. Phys. Rev. B
76, 045427 (2007)
34. S. Datta, Electronic Transport in Mesoscopic Systems (Cambridge University Press, Cambridge, 2002)
35. G.V. Dedkov, A.A. Kyasov, Thermal radiation of nanoparticles occurring at a heated flat
surface in vacuum. Tech. Phys. Lett. 33, 305–308 (2007)
36. M. De Zoysa, T. Asano, K. Mochizuki, A. Oskooi, T. Inoue, S. Noda, Conversion of broadband
to narrowband thermal emission through energy recycling. Nat. Photonics 6, 535–539 (2012)
37. R.S. DiMatteo, P. Greiff, S.L. Finberg, K.A. Young-Waithe, H.K.H. Choy, M.M. Masaki,
C.G. Fonstad, Enhanced photogeneration of carriers in a semiconductor via coupling across
a nonisothermal nanoscale vacuum gap. Appl. Phys. Lett. 79, 1894 (2001)
38. I.A. Dorofeyev, E.A. Vinogradov, Fluctuating electromagnetic fields of solids. Phys. Rep.
504, 75 (2011)
39. J. Drevillon, P. Ben-Abdallah, Ab initio design of coherent thermal sources. J. Appl. Phys.
102, 114305 (2007)
40. S. Enoch, J.J. Simon, L. Escoubas, Z. Elalmy, F. Lemarquis, P. Torchio, G. Albrand, Simple
layer-by-layer photonic crystal for the control of thermal emission. Appl. Phys. Lett. 86,
261101 (2005)
41. C. Fu, Z.M. Zhang, Thermal radiative properties of metamaterials and other nanostructured
materials: a review. Front. Energy Power Eng. China 3, 11–26 (2009)
42. M. Garin, T. Trifonov, A. Rodrguez, R. Alcubilla, F. Marquier, C. Arnold, J.J. Greffet, Improving selective thermal emission properties of three-dimensional macroporous silicon through
porosity tuning. Appl. Phys. Lett. 93, 081913 (2008)
43. J. Goodman, Statistical Optics (Wiley, New York, 1985)
44. J.J. Greffet, M. Nieto-Vesperinas, Field theory for the generalized bidirectional reflectivity:
derivation of Helmholtz’s reciprocity principle and Kirchhoff’s law. J. Opt. Soc. Am. A. 10,
2735 (1998)
