Квантовое интеллектуальное управление. Ч. 2: Квантовое оптимальное управление
Основное содержимое статьи
Аннотация
ассмотренная эволюция развития и современное состояние оптимальных систем управления с точки зрения квантовых вычислений и квантовой теории информации.
Скачивания
Информация о статье
Библиографические ссылки
H. Rabitz, R. de Vivie-Riedle, M. Motzkus and K. Kompa, Whither the future of controlling quantum phenomena? // Science, Vol. 288, 5 May, 2000, pp. 824 - 828.
H.A. Rabitz, M.M. Hsieh and C.M. Rosenthal, Quantum optimally controlled transition landscapes // Science, Vol. 303, 26 March, 2004, pp. 1998 - 2001.
M. Kobayashi, Mathematics Makes Molecules Dance // SIAM News, 1998, Vol. 31, No 9.
T. Sargent, The Dance of the Molecules: How Nanotechnology is Changing Our Lives.- Publ. Thunder’s Mouth Press, 2006.
D. Goswami, Computing with Dancing Molecules,” (available in:
http://www.iitk.ac.in/directions/dec04/Deb~dir%205~F.pdf) Электронный журнал «Системный анализ в науке и образовании» Выпуск № 1, 2018 год
J. Lucas, Dancing with Molecules. - Daily Princetonian, (Princeton University Department of Chemistry IAP UPDATE, Princeton University Department of Chemistry IAP UPDATE 5), 2005, pp. 5.
H. Rabitz, Shaped laser pulses acting as adaptive reagents // Science, 2003, Vol. 299. No. 5606, pp. 525 - 527 (available in: http://minty.caltech.edu/pracqsys04/Rabitz.pdf).
O. Renn and Mike Roco, Risk governance nanotechnology. - International Risk Governance Council, (white paper no.2), Geneva, June 2006, pp. 1 - 108.
http://physicalworld.org/restless_universe/html/ru_intro_B.html
N. Ganesan and T.-J. Tarn, Feedback control of decoherence in open quantum systems // Washington University in St. Louis, MO, U.S., 2005 (Presented at the International CDC-ECC conference, Seville, Spain, Dec 2005)
A.G. Butkovskii, and Yu.I. Samoilenko, Control of quantum-mechanical processes. - Nauka, Moscow, 1984 (English translation: Kluwer Academic Publishers, Dordrecht, 1990).
M. Dahleh, A. Pierce, H. Rabitz and V. Ramakrishna, Control of molecular motion // Proc. IEEE, 1996, Vol. 84, No 1, pp. 7 - 15.
H. Rabitz, Controlling quantum phenomena: why does it appear easy to achieve? // J. of Modern Optics, 2004, Vol. 51, No. 16-18, pp. 2469-2475.
S.A. Rice and M. Zhao, Optical Control of Molecular Dynamics. - Wiley Intersicence Publication, 2000.
M. Shapiro and P. Brumer, Principles of the Quantum Control of Molecular Process. - Wiley Intersicence Publication, 2003.
M. Shapiro and P. Brumer, Quantum control of bound and continuum state dynamics // Physics Reports, 2006, Vol. 425, pp.195 - 264;
M. Shapiro and P. Brumer, Coherent control of molecular dynamics // Reports Progress Physics, 2003, Vol. 66, pp. 859-942.
J. Zhang, Yu-xi Liu, Re-Bing Wu, K. Jacobs and F. Nori, Quantum feedback: Theory, experiments, and applications // Physics Reports, Vol. 679, 2017, Pp. 1-60.
M. Larocca, P. Poggi and D. Wisniacki, Quantum optimal control: Landscape structure and topology // arXiv:1802.05683v1 [quant-ph] 15 Feb 2018.