2012 Fiscal Year Final Research Report
Research on Quantum Memory using Superconducting Artificial Atoms
Project/Area Number |
22241025
|
Research Category |
Grant-in-Aid for Scientific Research (A)
|
Allocation Type | Single-year Grants |
Section | 一般 |
Research Field |
Nanostructural science
|
Research Institution | National Institute of Informatics (2011-2012) NTT Basic Research Laboratories (2010) |
Principal Investigator |
SEMBA Koichi 国立情報学研究所, 量子情報国際研究センター, 特任教授 (50393773)
|
Co-Investigator(Kenkyū-buntansha) |
NEMOTO Kae 国立情報学研究所, 情報学プリンシプル研究系, 教授 (80370104)
SAITO Shiro 日本電信電話 株式会社 NTT物性科学基礎研究所, 量子電子物性研究部, 主任研究員 (90393777)
KAKUYANAGI Kousuke 日本電信電話 株式会社 NTT物性科学基礎研究所, 量子電子物性研究部, 研究主任 (40417093)
NAKANO Hayato 日本電信電話 株式会社 NTT物性科学基礎研究所, 量子電子物性研究部, 主任研究員 (60393774)
ZHU Xiaobo 日本電信電話 株式会社 NTT物性科学基礎研究所, 量子電子物性研究部, リサーチアソシエイト (70536226)
KARIMOTO Shinichi 日本電信電話 株式会社 NTT物性科学基礎研究所, 量子電子物性研究部, 研究主任 (80393734)
KASU Makoto 佐賀大学, 工学(系)研究科(研究院), 教授 (50393731)
|
Co-Investigator(Renkei-kenkyūsha) |
MIZUOCHI Norikazu 大阪大学, 基礎工学研究科, 准教授 (00323311)
|
Project Period (FY) |
2010 – 2012
|
Keywords | 人工原子 / 量子メモリー / ダイヤモンド / 微小共振器 / メゾスコピック系 / 超精密計測 |
Research Abstract |
We have demonstrated strong coupling between a solid-state quantum processing unit (a superconducting artificial atom : a flux-qubit) and a dedicated quantum memory (nitrogen-vacancy (NV) centers in diamond). These results indicate that quantum information manipulated in flux qubits can be stored to and retrieved from an ensemble of NV centers. A quantum memory is an essential component for quantum communication and information processing. Our work demonstrated that diamond is a promising candidate for a future quantum memory. This is a significant step forward in the development of a quantum computer and additionally to an interface between the microwave and optical worlds. This result also demonstrated generation of entanglement between two distinct macroscopic matter i.e., the spin state of a few tens of million (attomol) NV centers and the persistent current circulating in a micro-meter sized electronic circuit, a flux-qubit. We have analysed the dynamics of the NV center ensemble and a single NV center strongly coupled with the superconducting qubit. We also investigated mathematical tools to represent these quantum states with a generalization of Wigner function as well as other quasi-distribution functions. This physical system can be applied to construct novel quantum information devices, such as memory and interface. We investigated several possibilities and showed advantages of such devices in quantum information network
|
-
-
-
-
-
-
-
-
[Journal Article] Semba:"Coherent coupling of a superconducting flux qubit to an electron spin ensemble in diamond"2011
Author(s)
X. Zhu, S. Saito, A. Kemp, K. Kakuyanagi, S. Karimoto, H. Nakano, W. J. Munro, Y. Tokura, M. S. Everitt, K. Nemoto, M. Kasu, N. Mizuochi, and K. Semba
-
Journal Title
Nature
Volume: Volume 478
Pages: 221-224
Peer Reviewed
-
-
-
-
-
-
-
-
-
[Presentation] Josephson circuit QED and hybrid quantum systems2012
Author(s)
Kouichi Semba
Organizer
International Workshop on Spectral analysis of noncommutative harmonic oscillators and quantum devices, Institute of Mathematics for Industry, Faculty of Mathematics (Invited talk)
Place of Presentation
Kyushu University, Fukuoka, Japan
Year and Date
20121126-27
-
-
-
-
[Presentation] ``Coupling a superconducting flux qubit to an NV ensemble: A hybrid system's approach for quantum media conversion,'' QCMC20122012
Author(s)
W. J. Munro, S. Saito, X. Zhu, Y. Matsuzaki, Kae Nemoto, T. Shimooka, N. Mizuochi, and K. Semba
Organizer
11th International Conference on Quantum Communication, Measurement and Computing (Hot Topic Talk)
Place of Presentation
Vienna, Austria
Year and Date
2012-07-30
-
-
-
-
-
[Remarks] 受賞:応用物理学会論文賞 2011.7.8. K. Kakuyanagi, S. Kagei, S. Saito, H. Nakano, and K. Semba, Generation of Non-Classical Microwave Photon States in an Inductor-Capacitor Resonator Coupled to a Superconducting Flux Qubit, Appl. Phys. Express 査読有3 103101 (2010)
-
-
-
-
-
[Remarks] 記事: X. Zhu, et al. Nature 478, 221.224 (2011) : Spins coupled to a persistent current, Nature, News & Views 478, 195-196 (2011)
-
[Remarks] 仙場 浩一, 3000万個で量子もつれ日経サイエンス 2012年1月号 p.25
-
[Remarks] 根本 香絵, NII, U Osaka Observe SC Qubit in Diamond, Observations may further Quantum Memory Technology, Superconductor Week Vol.26 No.1, pp.5-6, 2012/2/13
-
[Remarks] 「NTTなど、量子メモリーの原理実験に成功.「量子もつれ」振動を制御」asahi.com(朝日新聞社):2011年10月13日
-
[Remarks] 「量子メモリー実証成功, NTTなど」日経産業新聞 2011年10月13日 朝刊(11面)掲載
-
-
-
[Remarks] 「ダイヤモンドと超伝導量子ビットを直接組み合わせたハイブリッド系の量子状態制御に世界で初めて成功」 NTT 技術ジャーナルFOCUS ON THE NEWS 2012年1月号 p.63
-
-
-