103
23. M.S. Tame, K.R. McEnery, Ş.K. Özdemir, J. Lee, S.A. Maier, M. S. Kim, Quantum plasmonics, Nat. Phys. (2013).
24. M. F. Hossain, “Bose-Einstein (B-E) Photon Energy Reformation for Cooling and Heating the
Premises Naturally”, Applied Thermal Engineering, 2018.
25. S.R. Valluri, U. Becker, N. Grün, W. Scheid. Relativistic Collisions of Highly-Charged Ions,
J. Phys. B: At. Mol. Phys. 17 (1984) 4359–4370.
26. M. F. Hossain. “Transforming dark photons into sustainable energy”, International Journal of
Energy and Environmental Engineering, 2018.
27. M. F. Hossain. “Photon application in the design of sustainable buildings to console global
energy and environment”, Applied Thermal Engineering, 2018.
28. M.W.Y. Tu, W.M. Zhang, Non-Markovian decoherence theory for a double-dot charge qubit,
Phys. Rev. B 78 (2008) 235311.
29. M. F. Hossain (2017). Green science: independent building technology to mitigate energy,
environment, and climate change. Renewable and Sustainable Energy Reviews. 73; 695-705.
30. M. F. Hossain (2017). Green science: advanced building design technology to mitigate energy
and environment. Renewable and Sustainable Energy Reviews. 81; 3051-3060.
31. P. Arnold, G.D. Moore, L.G. Yaffe, Photon Emission from Ultrarelativistic Plasmas, J. High
Energy Phys. 11 (2001) 057.
32. R.J. Gould, GP Schréder, Pair Production in Photon-Photon Collisions, Phys. Rev. 155 (1967)
1404–1407.
33. Y.T. Tan, D.S. Kirschen, N. Jenkins, A model of PV generation suitable for stability analysis,
IEEE Trans. Energy Convers. 19 (2004) 748–755.
34. Y. Zhu, X. Hu, H. Yang, Q. Gong, On-chip plasmon-induced transparency based on plasmonic
coupled nanocavities, Sci. Rep. 4 (2014).
35. S.A. Klein, Calculation of flat-plate collector loss coefficients, Sol. Energy 17 (1975) 79–80.
36. V. Cardoso. “Quasinormal modes of Schwarzschild black holes in four and higher dimensions”, Physical Review D, 02/2004.
37. W.M. Zhang, P.Y. Lo, H.N. Xiong, M.W.Y. Tu, F. Nori, General Non-Markovian Dynamics of
Open Quantum Systems. Phys. Rev. Lett. 109 (2012) 170402.
38. S. Robert, and Andrzej Czarnecki (2016). “High-energy electrons from the muon decay in
orbit: Radiative corrections”, Physics Letters B.
39. U. Becker, N. Grün, W. Scheid, K-shell ionisation in relativistic heavy-ion collisions, J. Phys.
B: At. Mol. Phys. 20 (1987) 2075.
40. Y.F. Xiao, M. Li, Y.C. Liu, Y. Li, X. Sun, Q. Gong, Asymmetric Fano resonance analysis in
indirectly coupled microresonators, Phys. Rev. A 82 (2010) 065804.
41. Yi Guo, Ali Al-Jubainawi, Zhenjun Ma. “Performance investigation and optimisation of
electrodialysis regeneration for LiCl liquid desiccant cooling systems”, Applied Thermal
Engineering, 2018.
References
23. M.S. Tame, K.R. McEnery, Ş.K. Özdemir, J. Lee, S.A. Maier, M. S. Kim, Quantum plasmonics, Nat. Phys. (2013).
24. M. F. Hossain, “Bose-Einstein (B-E) Photon Energy Reformation for Cooling and Heating the
Premises Naturally”, Applied Thermal Engineering, 2018.
25. S.R. Valluri, U. Becker, N. Grün, W. Scheid. Relativistic Collisions of Highly-Charged Ions,
J. Phys. B: At. Mol. Phys. 17 (1984) 4359–4370.
26. M. F. Hossain. “Transforming dark photons into sustainable energy”, International Journal of
Energy and Environmental Engineering, 2018.
27. M. F. Hossain. “Photon application in the design of sustainable buildings to console global
energy and environment”, Applied Thermal Engineering, 2018.
28. M.W.Y. Tu, W.M. Zhang, Non-Markovian decoherence theory for a double-dot charge qubit,
Phys. Rev. B 78 (2008) 235311.
29. M. F. Hossain (2017). Green science: independent building technology to mitigate energy,
environment, and climate change. Renewable and Sustainable Energy Reviews. 73; 695-705.
30. M. F. Hossain (2017). Green science: advanced building design technology to mitigate energy
and environment. Renewable and Sustainable Energy Reviews. 81; 3051-3060.
31. P. Arnold, G.D. Moore, L.G. Yaffe, Photon Emission from Ultrarelativistic Plasmas, J. High
Energy Phys. 11 (2001) 057.
32. R.J. Gould, GP Schréder, Pair Production in Photon-Photon Collisions, Phys. Rev. 155 (1967)
1404–1407.
33. Y.T. Tan, D.S. Kirschen, N. Jenkins, A model of PV generation suitable for stability analysis,
IEEE Trans. Energy Convers. 19 (2004) 748–755.
34. Y. Zhu, X. Hu, H. Yang, Q. Gong, On-chip plasmon-induced transparency based on plasmonic
coupled nanocavities, Sci. Rep. 4 (2014).
35. S.A. Klein, Calculation of flat-plate collector loss coefficients, Sol. Energy 17 (1975) 79–80.
36. V. Cardoso. “Quasinormal modes of Schwarzschild black holes in four and higher dimensions”, Physical Review D, 02/2004.
37. W.M. Zhang, P.Y. Lo, H.N. Xiong, M.W.Y. Tu, F. Nori, General Non-Markovian Dynamics of
Open Quantum Systems. Phys. Rev. Lett. 109 (2012) 170402.
38. S. Robert, and Andrzej Czarnecki (2016). “High-energy electrons from the muon decay in
orbit: Radiative corrections”, Physics Letters B.
39. U. Becker, N. Grün, W. Scheid, K-shell ionisation in relativistic heavy-ion collisions, J. Phys.
B: At. Mol. Phys. 20 (1987) 2075.
40. Y.F. Xiao, M. Li, Y.C. Liu, Y. Li, X. Sun, Q. Gong, Asymmetric Fano resonance analysis in
indirectly coupled microresonators, Phys. Rev. A 82 (2010) 065804.
41. Yi Guo, Ali Al-Jubainawi, Zhenjun Ma. “Performance investigation and optimisation of
electrodialysis regeneration for LiCl liquid desiccant cooling systems”, Applied Thermal
Engineering, 2018.
References
