Coupling of Nitrogen-Vacancy Centers to Photonic Crystal Cavities in Monocrystalline Diamond

被引:336
|
作者
Faraon, Andrei [1 ,2 ]
Santori, Charles [1 ]
Huang, Zhihong [1 ]
Acosta, Victor M. [1 ]
Beausoleil, Raymond G. [1 ]
机构
[1] Hewlett Packard Labs, Palo Alto, CA 94304 USA
[2] CALTECH, Dept Appl Phys & Mat Sci, Pasadena, CA 91125 USA
关键词
NANOCAVITY; SPIN; MICROCAVITIES; RESOLUTION; EMISSION;
D O I
10.1103/PhysRevLett.109.033604
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The zero-phonon transition rate of a nitrogen-vacancy center is enhanced by a factor of similar to 70 by coupling to a photonic crystal resonator fabricated in monocrystalline diamond using standard semiconductor fabrication techniques. Photon correlation measurements on the spectrally filtered zero-phonon line show antibunching, a signature that the collected photoluminescence is emitted primarily by a single nitrogen-vacancy center. The linewidth of the coupled nitrogen-vacancy center and the spectral diffusion are characterized using high-resolution photoluminescence and photoluminescence excitation spectroscopy.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Coupling of nitrogen-vacancy centers in diamond to a GaP waveguide
    Fu, K. -M. C.
    Santori, C.
    Barclay, P. E.
    Aharonovich, I.
    Prawer, S.
    Meyer, N.
    Holm, A. M.
    Beausoleil, R. G.
    APPLIED PHYSICS LETTERS, 2008, 93 (23)
  • [2] Optical signatures of Mott-superfluid transition in nitrogen-vacancy centers coupled to photonic crystal cavities
    You, Jia-Bin
    Yang, Wan-Li
    Chen, Gang
    Xu, Zhen-Yu
    Wu, Lin
    Png, Ching-Eng
    Feng, Mang
    OPTICS LETTERS, 2019, 44 (08) : 2081 - 2084
  • [3] Invited Article: Precision nanoimplantation of nitrogen vacancy centers into diamond photonic crystal cavities and waveguides
    Schukraft, M.
    Zheng, J.
    Schroeder, T.
    Mouradian, S. L.
    Walsh, M.
    Trusheim, M. E.
    Bakhru, H.
    Englund, D. R.
    APL PHOTONICS, 2016, 1 (02)
  • [4] Preservation of quantum correlation between separated nitrogen-vacancy centers embedded in photonic-crystal cavities
    Yang, W. L.
    An, Jun-Hong
    Zhang, Chengjie
    Feng, M.
    Oh, C. H.
    PHYSICAL REVIEW A, 2013, 87 (02):
  • [5] Quantum dynamics and quantum state transfer between separated nitrogen-vacancy centers embedded in photonic crystal cavities
    Yang, W. L.
    Yin, Z. Q.
    Xu, Z. Y.
    Feng, M.
    Oh, C. H.
    PHYSICAL REVIEW A, 2011, 84 (04):
  • [6] Properties of nitrogen-vacancy centers in diamond: the group theoretic approach
    Maze, J. R.
    Gali, A.
    Togan, E.
    Chu, Y.
    Trifonov, A.
    Kaxiras, E.
    Lukin, M. D.
    NEW JOURNAL OF PHYSICS, 2011, 13
  • [7] Bright Nitrogen-Vacancy Centers in Diamond Inverted Nanocones
    Jeon, Seong-Woo
    Lee, Junghyun
    Jung, Hojoong
    Han, Sang-Wook
    Cho, Young-Wook
    Kim, Yong-Su
    Lim, Hyang-Tag
    Kim, Yanghee
    Niethammer, Matthias
    Lim, Weon Cheol
    Song, Jonghan
    Onoda, Shinobu
    Ohshima, Takeshi
    Reuter, Rolf
    Denisenko, Andrej
    Wrachtrup, Joerg
    Lee, Sang-Yun
    ACS PHOTONICS, 2020, 7 (10): : 2739 - 2747
  • [8] Perfect selective alignment of nitrogen-vacancy centers in diamond
    Fukui, Takahiro
    Doi, Yuki
    Miyazaki, Takehide
    Miyamoto, Yoshiyuki
    Kato, Hiromitsu
    Matsumoto, Tsubasa
    Makino, Toshiharu
    Yamasaki, Satoshi
    Morimoto, Ryusuke
    Tokuda, Norio
    Hatano, Mutsuko
    Sakagawa, Yuki
    Morishita, Hiroki
    Tashima, Toshiyuki
    Miwa, Shinji
    Suzuki, Yoshishige
    Mizuochi, Norikazu
    APPLIED PHYSICS EXPRESS, 2014, 7 (05)
  • [9] Structures in diamond for optical manipulation of nitrogen-vacancy centers
    Santori, C.
    Fu, K. -M. C.
    Barclay, P. E.
    Beausoleil, R. G.
    ADVANCED OPTICAL CONCEPTS IN QUANTUM COMPUTING, MEMORY, AND COMMUNICATION II, 2009, 7225
  • [10] Terahertz emission from diamond nitrogen-vacancy centers
    Kollarics, Sandor
    Markus, Bence Gabor
    Kucsera, Robin
    Thiering, Gergo
    Gali, Adam
    Nemeth, Gergely
    Kamaras, Katalin
    Forro, Laszlo
    Simon, Ferenc
    SCIENCE ADVANCES, 2024, 10 (22):