393
8. J. Eichler, Th. Stöhlker. Radiative electron capture in relativistic ion-atom collisions and the
photoelectric effect in hydrogen-like high-Z systems, Phys. Rep. 439, 1 (2007).
9. W. De Soto, S.A. Klein, and W. A. Beckman, “Improvement and validation of a model for
photovoltaic array performance,” Solar Energy, vol. 80, no. 1, pp. 78–88, Jan. 2006.
10. O. Khaselev. “A Monolithic Photovoltaic-Photoelectrochemical Device for Hydrogen
Production via Water Splitting”, Science, 04/17/1998.
11. Tame, M. S., K. R. McEnery, Ş. K. Özdemir, J. Lee, S. A. Maier, and M. S. Kim. “Quantum
plasmonics”, Nature Physics, 2013.
12. Yan, Wei-Bin, and Heng Fan. “Single-photon quantum router with multiple output ports”,
Scientific Reports, 2014.
13. Zhang, W. M., Lo, P. Y., Xiong, H. N., Tu, M. W. Y. & Nori, F. General Non-Markovian
Dynamics of Open Quantum Systems. Phys. Rev. Lett. 109, 170402 (2012).
14. Zhu, Yu, Xiaoyong Hu, Hong Yang, and Qihuang Gong. “On-chip plasmon-induced transparency based on plasmonic coupled nanocavities”, Scientific Reports, 2014.
15. N. D. Benavides and P. L. Chapman, “Modeling the effect of voltage ripple on the power output of photovoltaic modules,” IEEE Trans. Ind. Electron., vol. 55, no. 7, pp. 2638– 2643, Jul.
2008.
16. S. A. Klein. Calculation of flat-plate collector loss coefficients. Solar Energy, 17:79–80, 1975.
17. Tu, M. W. Y. & Zhang, W. M. Non-Markovian decoherence theory for a double-dot charge
qubit. Phys. Rev. B 78, 235311 (2008).
18. L. Langer, S. V. Poltavtsev I. A. Yugova, M. Salewski, D. R. Yakovlev, G. Karczewski,
T. Wojtowicz, I. A. Akimov & M. Bayer. Access to long-term optical memories using photon
echoes retrieved from semiconductor spins. Nature Photonics 8, 851–857 (2014).
19. Leijing Yang, Sheng Wang, Qingsheng Zeng, Zhiyong Zhang, Tian Pei, Yan Li & Lian-Mao
Peng (2011). Efficient photovoltage multiplication in carbon nanotubes – Nature Photonics
pp 672 – 676.
20. Md. Faruque Hossain. Theory of global cooling. 2016. Energy, Sustainability and Society.
6-24.
21. Najjari, A. B. Voitkiv, A. Artemyev, A. Surzhykov. Simultaneous electron capture and boundfree pair production in relativistic collisions of heavy nuclei with atoms, Phys. Rev. A 80,
012701 (2009).
22. T. Pregnolato, E. H. Lee, J. D. Song, S. Stobbe, and P. Lodahl. “Single-photon non-linear
optics with a quantum dot in a waveguide”, Nature Communications, 2015.
23. Peter Arnold. “Photon Emission from Ultrarelativistic Plasmas”, Journal of High Energy
Physics, 11/27/2001.
24. U. Becker, N. Grün, W. Scheid. K-shell ionisation in relativistic heavy-ion collisions, J. Phys.
B: At. Mol. Phys. 20, 2075 (1987).
25. Yuwen Wang, Yongyou Zhang, Qingyun Zhang, Bingsuo Zou, Udo Schwingenschlogl.
“Dynamics of single photon transport in a one-dimensional waveguide two-point coupled with
a Jaynes-Cummings system”, Scientific Reports, 2016.
26. Kai Hencken. “Transverse Momentum Distribution of Vector Mesons Produced in
Ultraperipheral Relativistic Heavy Ion Collisions”, Physical Review Letters, 01/2006.
27. 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.
28. Lo, Ping-Yuan, Heng-Na Xiong, and Wei-Min Zhang. “Breakdown of Bose-Einstein
Distribution in Photonic, Crystals”, Scientific Reports, 2015.
29. Reed M. Maxwell, Laura E. Condon. Connections between groundwater flow and transpiration partitioning. Science 22 Jul 2016: Vol. 353, Issue 6297, pp. 377-380.
30. Tobias D. Wheeler & Abraham D. Stroock. The transpiration of water at negative pressures in
a synthetic tree. 2008. Nature 455, 208–212.
31. Jaivime Evaristo, Scott Jasechko & Jeffrey J. McDonnell. Global separation of plant transpiration from groundwater and streamflow. 2015. Nature 525, 91–94.
References
8. J. Eichler, Th. Stöhlker. Radiative electron capture in relativistic ion-atom collisions and the
photoelectric effect in hydrogen-like high-Z systems, Phys. Rep. 439, 1 (2007).
9. W. De Soto, S.A. Klein, and W. A. Beckman, “Improvement and validation of a model for
photovoltaic array performance,” Solar Energy, vol. 80, no. 1, pp. 78–88, Jan. 2006.
10. O. Khaselev. “A Monolithic Photovoltaic-Photoelectrochemical Device for Hydrogen
Production via Water Splitting”, Science, 04/17/1998.
11. Tame, M. S., K. R. McEnery, Ş. K. Özdemir, J. Lee, S. A. Maier, and M. S. Kim. “Quantum
plasmonics”, Nature Physics, 2013.
12. Yan, Wei-Bin, and Heng Fan. “Single-photon quantum router with multiple output ports”,
Scientific Reports, 2014.
13. Zhang, W. M., Lo, P. Y., Xiong, H. N., Tu, M. W. Y. & Nori, F. General Non-Markovian
Dynamics of Open Quantum Systems. Phys. Rev. Lett. 109, 170402 (2012).
14. Zhu, Yu, Xiaoyong Hu, Hong Yang, and Qihuang Gong. “On-chip plasmon-induced transparency based on plasmonic coupled nanocavities”, Scientific Reports, 2014.
15. N. D. Benavides and P. L. Chapman, “Modeling the effect of voltage ripple on the power output of photovoltaic modules,” IEEE Trans. Ind. Electron., vol. 55, no. 7, pp. 2638– 2643, Jul.
2008.
16. S. A. Klein. Calculation of flat-plate collector loss coefficients. Solar Energy, 17:79–80, 1975.
17. Tu, M. W. Y. & Zhang, W. M. Non-Markovian decoherence theory for a double-dot charge
qubit. Phys. Rev. B 78, 235311 (2008).
18. L. Langer, S. V. Poltavtsev I. A. Yugova, M. Salewski, D. R. Yakovlev, G. Karczewski,
T. Wojtowicz, I. A. Akimov & M. Bayer. Access to long-term optical memories using photon
echoes retrieved from semiconductor spins. Nature Photonics 8, 851–857 (2014).
19. Leijing Yang, Sheng Wang, Qingsheng Zeng, Zhiyong Zhang, Tian Pei, Yan Li & Lian-Mao
Peng (2011). Efficient photovoltage multiplication in carbon nanotubes – Nature Photonics
pp 672 – 676.
20. Md. Faruque Hossain. Theory of global cooling. 2016. Energy, Sustainability and Society.
6-24.
21. Najjari, A. B. Voitkiv, A. Artemyev, A. Surzhykov. Simultaneous electron capture and boundfree pair production in relativistic collisions of heavy nuclei with atoms, Phys. Rev. A 80,
012701 (2009).
22. T. Pregnolato, E. H. Lee, J. D. Song, S. Stobbe, and P. Lodahl. “Single-photon non-linear
optics with a quantum dot in a waveguide”, Nature Communications, 2015.
23. Peter Arnold. “Photon Emission from Ultrarelativistic Plasmas”, Journal of High Energy
Physics, 11/27/2001.
24. U. Becker, N. Grün, W. Scheid. K-shell ionisation in relativistic heavy-ion collisions, J. Phys.
B: At. Mol. Phys. 20, 2075 (1987).
25. Yuwen Wang, Yongyou Zhang, Qingyun Zhang, Bingsuo Zou, Udo Schwingenschlogl.
“Dynamics of single photon transport in a one-dimensional waveguide two-point coupled with
a Jaynes-Cummings system”, Scientific Reports, 2016.
26. Kai Hencken. “Transverse Momentum Distribution of Vector Mesons Produced in
Ultraperipheral Relativistic Heavy Ion Collisions”, Physical Review Letters, 01/2006.
27. 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.
28. Lo, Ping-Yuan, Heng-Na Xiong, and Wei-Min Zhang. “Breakdown of Bose-Einstein
Distribution in Photonic, Crystals”, Scientific Reports, 2015.
29. Reed M. Maxwell, Laura E. Condon. Connections between groundwater flow and transpiration partitioning. Science 22 Jul 2016: Vol. 353, Issue 6297, pp. 377-380.
30. Tobias D. Wheeler & Abraham D. Stroock. The transpiration of water at negative pressures in
a synthetic tree. 2008. Nature 455, 208–212.
31. Jaivime Evaristo, Scott Jasechko & Jeffrey J. McDonnell. Global separation of plant transpiration from groundwater and streamflow. 2015. Nature 525, 91–94.
References
