361
10. Liao, J. Q. and Law, C. K. Correlated two-photon transport in a one-dimensional waveguide
side-coupled to a nonlinear cavity. Phys. Rev. A 82, 053836 (2010).
11. Dayan, B. et al. A photon turnstile dynamically regulated by one atom. Science 319, 1062–
1065 (2008).
12. Douglas, J. S., Habibian, H., Hung, C., Gorshkov, A., Kimble, H. and Chang, D. “Quantum
many-body models with cold atoms coupled to photonic crystals”, Nature Photonics, 2015.
13. Gould, R. J. “Pair Production in Photon-Photon Collisions”, Physical Review, 03/1967.
14. Guerlin, C. et al. Progressive field-state collapse and quantum non-demolition photon counting. Nature 448, 889 (2007).
15. Shi, T., Fan, S. and Sun, C. P. Two-photon transport in a waveguide coupled to a cavity in a
two-level system. Phys. Rev. A 84, 063803 (2011).
16. Gleyzes, S. et al. Quantum jumps of light recording the birth and death of a photon in a cavity.
Nature 446, 297 (2007).
17. Reinhard, A. “Strongly correlated photons on a chip”, Nature Photonics, 2011.
18. Eichler, J., Stöhlker, Th. Radiative electron capture in relativistic ion-atom collisions and the
photoelectric effect in hydrogen-like high-Z systems, Phys. Rep. 439, 1 (2007).
19. Hossain, Md. Faruque. (2016). Solar Energy Integration into Advanced Building Design for
Meeting Energy Demand. International Journal of Energy Research. 40, 1293-1300.
20. Hossain, Md. Faruque (2017). Design and Construction of Ultra-Relativistic Collision PV
Panel and Its Application into Building Sector to Mitigate Total Energy Demand. Journal of
Building Engineering. https://doi.org/10.1016/j.jobe.2016.12.005.
21. Englund, D. et al. Resonant excitation of a quantum dot strongly coupled to a photonic crystal
nanocavity. Phys. Rev. Lett. 104, 073904 (2010).
22. Yan, W. and Fan, H. “Single-photon quantum router with multiple output ports”, Scientific
Reports, 2014.
23. Beyer, H F, T Gassner, M Trassinelli, R Heß, U Spillmann, D Banaś, K-H Blumenhagen,
F Bosch, C Brandau, W Chen, Chr Dimopoulou, E Förster, R E Grisenti, A Gumberidze, S
Hagmann, P-M Hillenbrand, P Indelicato, P Jagodzinski, T Kämpfer, Chr Kozhuharov, M
Lestinsky, D Liesen, Yu A Litvinov, R Loetzsch, B Manil, R Märtin, F Nolden, N Petridis, M
S Sanjari, K S Schulze, M Schwemlein, A Simionovici, M Steck, Th Stöhlker, C I Szabo, S
Trotsenko, I Uschmann, G Weber, O Wehrhan, N Winckler, D F A Winters, N Winters, and E
Ziegler. “Crystal optics for precision x-ray spectroscopy on highly charged ions—conception
and proof”, Journal of Physics B Atomic Molecular and Optical Physics, 2015.
24. Li, Qiong, D. Z. Xu, C. Y. Cai, and C. P. Sun. “Recoil effects of a motional scatterer on singlephoton scattering in one dimension”, Scientific Reports, 2013.
25. Hossain, Md. Faruque. (2018). Photonic Thermal Energy Control to Naturally Cool and Heat
the Building. Advanced Thermal Engineering. 131, 576–586.
26. Liao, J. Q. and Law, C. K. Correlated two-photon scattering in cavity optomechanics. Phys.
Rev. A 87, 043809 (2013).
27. Li, Q., Xu, D. Z., Cai, C. Y. and Sun, C. P. “Recoil effects of a motional scatterer on singlephoton scattering in one dimension”, Scientific Reports, 2013.
28. Lo, P., Xiong, H., and Zhang, W. “Breakdown of Bose-Einstein Distribution in Photonic
Crystals”, Scientific Reports, 2015.
29. Sayrin, C. et al. Real-time quantum feedback prepares and stabilizes photon number states.
Nature 477, 73 (2011).
30. Han, Z. and Bozhevolnyi, S.  I. Plasmon-induced transparency with detuned ultracompact
Fabry-Pérot resonators in integrated plasmonic devices. Opt. Express 19, 3251–3257 (2011).
31. Hossain, Md. Faruque (2017). Green Science: Independent Building Technology to Mitigate
Energy, Environment, and Climate Change. Renewable and Sustainable Energy Reviews.
https://doi.org/10.1016/j.rser.2017.01.136.
32. Hossain, Md. Faruque. (2018). Green Science: Advanced Building Design Technology
to Mitigate Energy and Environment. Renewable and Sustainable Energy Reviews. 81 (2),
3051-3060.
References
Précédent

- 357/460

Suivant