86
M. Senami and A. Fukushima
Quantum field theory is more correct theory than quantum mechanics. Ideally,
electronic structure should be prepared by electronic structure computations based
on quantum filed theory, and unfortunately, these computations are not available
yet, except for some special cases such as Bethe-Salpeter equation, lattice QCD
[61], and NRQED [62]. Some groups are trying to establish electronic structure
computation based on quantum field theory [50, 63–69]. This advanced electronic
structure computation is hoped to be established in the near future.
References
1. R.P. Feynman, J. Microelectromech. Syst. 1, 60 (1992)
2. R. Degraeve, G. Groeseneken, R. Bellens, M. Depas, H.E. Maes, Tech. Dig. Int. Electron
Devices Meet. 863 (1995). https://doi.org/10.1109/IEDM.1995.499353
3. R. Degraeve, G. Groeseneken, R. Bellens, J.L. Ogier, M. Depas, P.J. Roussel, H.E. Maes, IEEE
Trans. Electron Devices 45, 904 (1998)
4. M.A. Reed, C. Zhou, C.J. Muller, T.P. Burgin, J.M. Tour, Science 278, 252 (1997)
5. A. Nitzan, M.A. Ratner, Science 300, 1384 (2003)
6. W. Haiss, C. Wang, I. Grace, A.S. Batsanov, D.J. Schiffrin, S.J. Higgins, M.R. Bryce, C.J.
Lambert, R.J. Nichols, Nat. Mater. 5, 995 (2006)
7. L. Venkataraman, J.E. Klare, I.W. Tam, C. Nuckolls, M.S. Hybertsen, M.L. Steigerwald, Nano
Lett. 6, 458 (2006)
8. Y. Kim, T. Pietsch, A. Erbe, W. Belzig, E. Scheer, Nano Lett. 11, 3734 (2011)
9. H. Hakkinen, Nat. Chem. 4, 443 (2012)
10. K. Yokota, M. Taniguchi, M. Tsutsui, T. Kawai, J. Am. Chem. Soc. 132, 17364 (2010)
11. C.R. Arroyo, E. Leary, A. Castellanos-Gomez, G. Rubio-Bollinger, M. Teresa Gonzalez, N.
Agrait, J. Am. Chem. Soc. 133, 14313 (2011)
12. M. Frei, S.V. Aradhya, M.S. Hybertsen, L. Venkataraman, J. Am. Chem. Soc. 134, 4003 (2012)
13. Y. Ikeda, M. Senami, A. Tachibana, Trans. Mat. Res. Soc. Jpn. 38(3), 397 (2013)
14. A. Tachibana, J. Mol. Model 11, 301 (2005)
15. A. Tachibana, J. Mol. Struct. (THEOCHEM) 943, 138 (2010)
16. A. Tachibana, New Aspects of Quantum Electrodynamics (Springer Nature, Singapore, 2017)
17. M. Senami, Y. Ikeda, A. Tachibana, Jpn. J. Appl. Phys. 50, 010103 (2011)
18. Y. Ikeda, M. Senami, A. Tachibana, AIP Adv. 2, 042168 (2012)
19. T. Hara, M. Senami, A. Tachibana, Phys. Lett. A 376, 1434 (2012)
20. M. Fukuda, M. Senami, A. Tachibana, in Advances in Quantum Methods and Applications
in Chemistry, Physics, and Biology Progress in Theoretical Chemistry and Physics, vol. 27,
chap. 7, eds. by M. Hotokka, E.J. Brändas, J. Maruani, G. Delgado-Barrio (Springer, New
York, 2013), pp. 131–139
21. M. Fukuda, K. Soga, M. Senami, A. Tachibana, Int. J. Quant. Chem 116, 920 (2016)
22. A. Fukushima, Y. Tsuchida, M. Senami, A. Tachibana, Jpn. J. Appl. Phys. 49, 111504 (2010)
23. A. Fukushima, S. Sugino, Y. Tsuchida, M. Senami, A. Tachibana, Jpn. J. Appl. Phys. 49,
121504 (2010)
24. M. Senami, Y. Tsuchida, A. Fukushima, Y. Ikeda, A. Tachibana, Jpn. J. Appl. Phys. 51, 031101
(2012)
25. H. Nozaki, M. Senami, K. Ichikawa, A. Tachibana, Jpn. J. Appl. Phys. 55, 08PE01 (2016)
26. M. Senami, Y. Ikeda, A. Fukushima, A. Tachibana, Jpn. J. Appl. Phys. 49, 115002 (2010)
27. M. Senami, Y. Ogiso, T. Miyazato, F. Yoshino, Y. Ikeda, A. Tachibana, Trans. Mat. Res. Soc.
Jpn. 38(4), 535 (2013)
28. F. Yoshino, Master Thesis, Department of Micro Engineering, Kyoto University, Kyoto, 2012
M. Senami and A. Fukushima
Quantum field theory is more correct theory than quantum mechanics. Ideally,
electronic structure should be prepared by electronic structure computations based
on quantum filed theory, and unfortunately, these computations are not available
yet, except for some special cases such as Bethe-Salpeter equation, lattice QCD
[61], and NRQED [62]. Some groups are trying to establish electronic structure
computation based on quantum field theory [50, 63–69]. This advanced electronic
structure computation is hoped to be established in the near future.
References
1. R.P. Feynman, J. Microelectromech. Syst. 1, 60 (1992)
2. R. Degraeve, G. Groeseneken, R. Bellens, M. Depas, H.E. Maes, Tech. Dig. Int. Electron
Devices Meet. 863 (1995). https://doi.org/10.1109/IEDM.1995.499353
3. R. Degraeve, G. Groeseneken, R. Bellens, J.L. Ogier, M. Depas, P.J. Roussel, H.E. Maes, IEEE
Trans. Electron Devices 45, 904 (1998)
4. M.A. Reed, C. Zhou, C.J. Muller, T.P. Burgin, J.M. Tour, Science 278, 252 (1997)
5. A. Nitzan, M.A. Ratner, Science 300, 1384 (2003)
6. W. Haiss, C. Wang, I. Grace, A.S. Batsanov, D.J. Schiffrin, S.J. Higgins, M.R. Bryce, C.J.
Lambert, R.J. Nichols, Nat. Mater. 5, 995 (2006)
7. L. Venkataraman, J.E. Klare, I.W. Tam, C. Nuckolls, M.S. Hybertsen, M.L. Steigerwald, Nano
Lett. 6, 458 (2006)
8. Y. Kim, T. Pietsch, A. Erbe, W. Belzig, E. Scheer, Nano Lett. 11, 3734 (2011)
9. H. Hakkinen, Nat. Chem. 4, 443 (2012)
10. K. Yokota, M. Taniguchi, M. Tsutsui, T. Kawai, J. Am. Chem. Soc. 132, 17364 (2010)
11. C.R. Arroyo, E. Leary, A. Castellanos-Gomez, G. Rubio-Bollinger, M. Teresa Gonzalez, N.
Agrait, J. Am. Chem. Soc. 133, 14313 (2011)
12. M. Frei, S.V. Aradhya, M.S. Hybertsen, L. Venkataraman, J. Am. Chem. Soc. 134, 4003 (2012)
13. Y. Ikeda, M. Senami, A. Tachibana, Trans. Mat. Res. Soc. Jpn. 38(3), 397 (2013)
14. A. Tachibana, J. Mol. Model 11, 301 (2005)
15. A. Tachibana, J. Mol. Struct. (THEOCHEM) 943, 138 (2010)
16. A. Tachibana, New Aspects of Quantum Electrodynamics (Springer Nature, Singapore, 2017)
17. M. Senami, Y. Ikeda, A. Tachibana, Jpn. J. Appl. Phys. 50, 010103 (2011)
18. Y. Ikeda, M. Senami, A. Tachibana, AIP Adv. 2, 042168 (2012)
19. T. Hara, M. Senami, A. Tachibana, Phys. Lett. A 376, 1434 (2012)
20. M. Fukuda, M. Senami, A. Tachibana, in Advances in Quantum Methods and Applications
in Chemistry, Physics, and Biology Progress in Theoretical Chemistry and Physics, vol. 27,
chap. 7, eds. by M. Hotokka, E.J. Brändas, J. Maruani, G. Delgado-Barrio (Springer, New
York, 2013), pp. 131–139
21. M. Fukuda, K. Soga, M. Senami, A. Tachibana, Int. J. Quant. Chem 116, 920 (2016)
22. A. Fukushima, Y. Tsuchida, M. Senami, A. Tachibana, Jpn. J. Appl. Phys. 49, 111504 (2010)
23. A. Fukushima, S. Sugino, Y. Tsuchida, M. Senami, A. Tachibana, Jpn. J. Appl. Phys. 49,
121504 (2010)
24. M. Senami, Y. Tsuchida, A. Fukushima, Y. Ikeda, A. Tachibana, Jpn. J. Appl. Phys. 51, 031101
(2012)
25. H. Nozaki, M. Senami, K. Ichikawa, A. Tachibana, Jpn. J. Appl. Phys. 55, 08PE01 (2016)
26. M. Senami, Y. Ikeda, A. Fukushima, A. Tachibana, Jpn. J. Appl. Phys. 49, 115002 (2010)
27. M. Senami, Y. Ogiso, T. Miyazato, F. Yoshino, Y. Ikeda, A. Tachibana, Trans. Mat. Res. Soc.
Jpn. 38(4), 535 (2013)
28. F. Yoshino, Master Thesis, Department of Micro Engineering, Kyoto University, Kyoto, 2012
