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5篇 您的检索式:作者名="ZHAN MingSheng"
    题名 作者 年代 出处 被引量
1Single atoms in the ring lattice for quantum information processing and quantum simulation显示文摘We have demonstrated preparing and rotating single neutral rubidium atoms in an optical ring lattice generated by a spatial light modulator, inserting two atoms into a single microscopic optical potential efficiently by dynamically reshaping the optical dipole trap, trapping single atoms in a blue detuned optical bottle beam trap, and confining single atoms into the Lamb-Dicke regime by combining red and blue detuned optical potentials. In combination with the manipulation of internal states of single atoms, the study is opening a way for research in the field of quantum information processing and quantum simulation. In this paper we review the past works and discuss the prospects.YU Shi HE XiaoDong XU Peng LIU Min WANG Jin ZHAN MingSheng 2012Chinese Science Bulletin2012,57,16:8
2Laser-controlled state excitation and quantum computation显示文摘Zhang Dengyu Zhan Mingsheng 1999Acta Physica Sinaca(0verseas Edition)1999,8,4:1
3Correlation, entropy, and information transfer in black hole radiation显示文摘Since the discovery of Hawking radiation, its consistency with quantum theory has been widely questioned. In the widely described picture, irrespective of what initial state a black hole starts with before collapsing, it eventually evolves into a thermal state of Hawking radiations after the black hole is exhausted. This scenario violates the principle of unitarity as required for quantum mechanics and leads to the acclaimed ‘‘information loss paradox''. This paradox has become an obstacle or a reversed touchstone for any possible theory to unify the gravity and quantum mechanics. Based on the results from Hawking radiation as tunneling, we recently show that Hawking radiations can carry off all information about the collapsed matter in a black hole. After discovering the existence of information-carrying correlation, we show in great detail that entropy is conserved for Hawking radiation based on standard probability theory and statistics. We claim that information previously considered lost remains hidden inside Hawking radiation. More specifically, it is encoded into correlations between Hawking radiations. Our study thus establishes harmony between Hawking radiation and the unitarity of quantum mechanics, which establishes the basis for a significant milestone toward resolving the long-standing information loss paradox. The paper provides a brief review of the exciting development on Hawking radiation. In addition to summarize our own work on this subject, we compare and address other related studies.Baocheng Zhang Qingyu Cai Mingsheng Zhan Li You 2014Chinese Science Bulletin2014,59,11:1
4Precision measurement physics: physics that precision matters显示文摘Without measurement,there would be no science.Modern science is established and developed in the process of hypothesis-testmodel-theory cycle.Physics and measurement are inseparable.Precision measurement refers to the use of advanced technology and methods to pursue high accuracy under the existing physical framework.Precision measurement physics is to test the range of existing physics in a higher precision and try to find out the limit of the frame so as to discover new physics.In other words,precision measurement physics is the physics that precision matters.It is well known that an improvement of measuring precision in physics by an order of magnitude often leads to new physical discoveries.Early observations of the atomic separate line series gave birth to quantum mechanics,and the fine structure of atomic spectrum and the discovery of Lamb shift laid an experimental foundation for the birth of relativistic quantum mechanics and quantum electrodynamics(QED),respectively.Mingsheng Zhan Xincheng Xie 2020National Science Review2020,7,12:1
5Quantum fluctuations in a mesoscopic inductance coupling circuit显示文摘Wang Jisuo Liu Tangkun Zhan Mingsheng 2000Int J Theor Phys2000,39,8:1
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