Thus, there is an elegant contradistinction between the dynamics of electromagnetic
fields in cavity and motion of a harmonic oscillator. In fact, quantum electromagnetism is based upon the treatment of a quantum harmonic oscillator introduced in
Chap. 2.
References
1. Moore WJ (1955) Physical chemistry, 3rd edn. Prentice-Hall, Englewood Cliffs
2. Smith FG, King TA, Wilkins D (2007) Optics and photonics, 2nd edn. Wiley, Chichester
3. Sunakawa S (1965) Theoretical electromagnetism. Kinokuniya, Tokyo. (in Japanese)
4. Loudon R (2000) The quantum theory of light, 3rd edn. Oxford University Press, Oxford
5. Born M, Wolf E (2005) Principles of optics, 7th edn. Cambridge University Press, Cambridge
6. Yamao T, Okuda Y, Makino Y, Hotta S (2011) Dispersion of the refractive indices of
thiophene/phenylene co-oligomer single crystals. J Appl Phys 110(5):053113
7. Yamao T, Higashihara S, Yamashita S, Sano H, Inada Y, Yamashita K, Ura S, Hotta S (2018)
Design principle of high-performance organic single-crystal light-emitting devices. J Appl Phys
123(23):235501
8. Siegman AE (1986) Lasers. University Science Books, Sausalito
9. Palmer C (2005) Diffraction grating handbook, 6th edn. Newport Corporation, New York
10. Hotta S, Yamao T (2011) The thiophene/phenylene co-oligomers: exotic molecular semiconductors integrating high-performance electronic and optical functionalities. J Mater Chem 21
(5):1295–1304
11. Hotta S, Goto M, Azumi R, Inoue M, Ichikawa M, Taniguchi Y (2004) Crystal structures of
thiophene/phenylene co-oligomers with different molecular shapes. Chem Mater 16
(2):237–241
12. Yariv A, Yeh P (2003) Optical waves in crystals: propagation and control of laser radiation.
Wiley, New York
13. Pain HJ (2005) The physics of vibrations and waves, 6th edn. Wiley, Chichester
14. Inada Y, Kawata Y, Kawai T, Hotta S, Yamao T (2020) Laser oscillation at an intended
wavelength from a distributed feedback structure on anisotropic organic crystals. J Appl Phys
127(5):053102
15. Fox M (2006) Quantum Optics. Oxford University Press, Oxford
378
9 Light Quanta: Radiation and Absorption
fields in cavity and motion of a harmonic oscillator. In fact, quantum electromagnetism is based upon the treatment of a quantum harmonic oscillator introduced in
Chap. 2.
References
1. Moore WJ (1955) Physical chemistry, 3rd edn. Prentice-Hall, Englewood Cliffs
2. Smith FG, King TA, Wilkins D (2007) Optics and photonics, 2nd edn. Wiley, Chichester
3. Sunakawa S (1965) Theoretical electromagnetism. Kinokuniya, Tokyo. (in Japanese)
4. Loudon R (2000) The quantum theory of light, 3rd edn. Oxford University Press, Oxford
5. Born M, Wolf E (2005) Principles of optics, 7th edn. Cambridge University Press, Cambridge
6. Yamao T, Okuda Y, Makino Y, Hotta S (2011) Dispersion of the refractive indices of
thiophene/phenylene co-oligomer single crystals. J Appl Phys 110(5):053113
7. Yamao T, Higashihara S, Yamashita S, Sano H, Inada Y, Yamashita K, Ura S, Hotta S (2018)
Design principle of high-performance organic single-crystal light-emitting devices. J Appl Phys
123(23):235501
8. Siegman AE (1986) Lasers. University Science Books, Sausalito
9. Palmer C (2005) Diffraction grating handbook, 6th edn. Newport Corporation, New York
10. Hotta S, Yamao T (2011) The thiophene/phenylene co-oligomers: exotic molecular semiconductors integrating high-performance electronic and optical functionalities. J Mater Chem 21
(5):1295–1304
11. Hotta S, Goto M, Azumi R, Inoue M, Ichikawa M, Taniguchi Y (2004) Crystal structures of
thiophene/phenylene co-oligomers with different molecular shapes. Chem Mater 16
(2):237–241
12. Yariv A, Yeh P (2003) Optical waves in crystals: propagation and control of laser radiation.
Wiley, New York
13. Pain HJ (2005) The physics of vibrations and waves, 6th edn. Wiley, Chichester
14. Inada Y, Kawata Y, Kawai T, Hotta S, Yamao T (2020) Laser oscillation at an intended
wavelength from a distributed feedback structure on anisotropic organic crystals. J Appl Phys
127(5):053102
15. Fox M (2006) Quantum Optics. Oxford University Press, Oxford
378
9 Light Quanta: Radiation and Absorption
