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2011 Fiscal Year Final Research Report

Observations of quantum entangled states and quantum critical behavior by using a precise probing method of microwave near-field

Research Project

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Project/Area Number 21200035
Research Category

Grant-in-Aid for Scientific Research on Innovative Areas (Research a proposed research project)

Allocation TypeSingle-year Grants
Research Field Applied materials science/Crystal engineering
Microdevices/Nanodevices
Research InstitutionAoyama Gakuin University

Principal Investigator

KITANO Haruhisa  青山学院大学, 理工学部, 准教授 (00313164)

Co-Investigator(Renkei-kenkyūsha) SASAKI Takahiko  東北大学, 金属材料研究所, 教授 (20241565)
Project Period (FY) 2009 – 2011
Keywords超伝導体 / 量子もつれ合い / マイクロ波 / 空洞共振器 / 量子相転移
Research Abstract

Quantum entangled states become essentially important in both regions of condensed matter physics and quantum information technology. Toward a complete understanding of such states, we study the development of a microwave microscope to probe the quantum critical behavior in the neighborhood of quantum critical point, and the design of a superconducting cavity resonator to investigate the quantum entangled states generated by using a quantum electrodynamics theory. We found that a spatial resolution of the microwave microscope is strongly enhanced by utilizing a microwave near-field, which is realized by the insertion of a metallic needle into a cavity resonator. We also found that such an insertion of the metallic needle is useful for a precise control of the coupling constant between the Josephson quantum bits and the microwave photons at low temperatures, which is required to create the quantum entangled states.

  • Research Products

    (4 results)

All 2010 2009 Other

All Journal Article (2 results) Presentation (1 results) Remarks (1 results)

  • [Journal Article] Completely hydrostatic pressure effect of anisotropic resistivity in the 1-D organic conductor (TMTTF)_2SbF_62010

    • Author(s)
      M. Itoi, Y. Ishii, S. Takekoshi, H. Kitano, K. Matsubayashi, Y. Uwatoko, T. Nakamura
    • Journal Title

      Physica

      Volume: C 470 .pot4 Pages: S594-S595

    • DOI

      doi:10.1016/j.physc.2009.11.138

  • [Journal Article] 超伝導揺らぎから見た高温超伝導銅酸化物の超伝導発現機構2010

    • Author(s)
      北野晴久, 大橋健良, 前田京剛
    • Journal Title

      固体物理

      Volume: 45巻 Pages: 511-527

  • [Presentation] (TMTTF)_2SbF_6のマイクロ波電気伝導度測定2009

    • Author(s)
      竹腰秀甫, 他
    • Organizer
      日本物理学会2009年秋季大会
    • Place of Presentation
      熊本大学
    • Year and Date
      2009-09-27
  • [Remarks]

    • URL

      http://www.phys.aoyama.ac.jp/~w3-kitano/index.html

URL: 

Published: 2013-07-31  

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