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Deutsche Physikalische Gessellschaft IOP Institute of Physics

Low-temperature optical characterization of a near-infrared single-photon emitter in nanodiamonds

P Siyushev1, V Jacques1,4, I Aharonovich2, F Kaiser1, T Müller3, L Lombez3, M Atatüre3, S Castelletto2, S Prawer2, F Jelezko1 and J Wrachtrup1

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[1]
Kurtsiefer C, Mayer S, Zarda P and Weinfurter H 2000 A robust all-solid-state source for single photons Phys. Rev. Lett. 85 290-3
CrossRef  PubMed 
[2]
Brouri R, Beveratos A, Poizat J-P and Grangier P 2000 Single photon emission from colored centers in diamond Opt. Lett. 25 1294
CrossRef  PubMed 
[3]
Wang C, Kurtsiefer C, Weinfurter H and Burchard B 2006 Single photon emission from SiV centres in diamond produced by ion implantation J. Phys. B 39 37-41
IOPscience 
[4]
Gaebel T, Popa I, Gruber A, Domhan M, Jelezko F and Wrachtrup J 2004 Stable single-photon source in the near infrared New J. Phys. 6 98
IOPscience 
[5]
Wu E, Jacques V, Zeng H, Grangier P, Treussart F and Roch J-F 2006 Narrow-band single-photon emission in the near infrared for quantum key distribution Opt. Express 14 1296
CrossRef  PubMed 
[6]
Balasubramanian G et al 2009 Ultralong spin coherence time in isotopically engineered diamond Nat. Mat. 8 383-7
CrossRef 
[7]
Tamarat P et al 2006 Stark shift control of single optical centres in diamond Phys. Rev. Lett. 97 083002
CrossRef  PubMed 
[8]
Batalov A, Zierl C, Gaebel T, Neumann P, Chan I Y, Balasubramanian G, Hemmer P R, Jelezko F and Wrachtrup J 2008 Temporal coherence of photons emitted by single nitrogen-vacancy defect centers in diamond using optical Rabi-oscillations Phys. Rev. Lett. 100 077401
CrossRef  PubMed 
[9]
Jelezko F, Popa I, Gruber A, Tietz C and Wrachtrup J 2002 Single spin state in a defect center resolved by optical spectroscopy Appl. Phys. Lett. 81 2160-2
CrossRef 
[10]
Aharonovich I, Zhou C, Stacey A, Treussart F, Roch J F and Prawer 2008 Formation of color centers in nanodiamonds by plasma assisted diffusion of impurities from the growth substrate Appl. Phys. Lett. 93 243112
CrossRef 
[11]
Aharonovich I, Zhou C, Stacey A, Orwa J, Castelletto S, Simpson D, Greentree A D, Treussart F, Roch J F and Prawer S 2009 Enhanced single-photon emission in the near infrared from a diamond color center Phys. Rev. B 79 235316
CrossRef 
[12]
Lounis B and Orrit M 2005 Single-photon sources Rep. Prog. Phys. 68 1129-79
IOPscience 
[13]
Knill E, Laflamme R and Milburn G J 2001 A scheme for efficient quantum computation with linear optics Nature 409 46
CrossRef  PubMed 
[14]
O'Brien J L 2007 Optical quantum computing Science 318 1567-70
CrossRef  PubMed 
[15]
Stacey A, Aharonovich I, Prawer S and Butler J E 2009 Controlled synthesis of high quality micro /nano-diamonds by microwave plasma chemical vapor deposition Diam. Relat. Mater. 18 51-5
CrossRef 
[16]
Aharonovich I, Castelletto S, Simpson D, Stacey A, McCallum J, Greentree A and Prawer S 2009 Two-level ultra bright single photon emission from diamond nanocrystals, Nano Lett. 9 3191-5
CrossRef  PubMed 
[17]
Beveratos A, Kühn S, Brouri R, Gacoin T, Poizat J P and Grangier P 2002 Room temperature stable single-photon source Eur. Phys. J. D 18 191-6
CrossRef 
[18]
Beveratos A, Brouri R, Gacoin T, Poizat J-P and Grangier P 2001 Nonclassical radiation from diamond nanocrystals Phys. Rev. A 64 061802
CrossRef 
[19]
Wu E, Jacques V, Treussart F, Zeng H, Grangier P and Roch J-F 2006 Single-photon emission in the near infrared from diamond colour centre J. Lumin. 119-20 19-23
CrossRef 
[20]
Epstein R J, Mendoza F M, Kato Y K and Awschalom D D 2005 Anisotropic interactions of a single spin and dark-spin spectroscopy in diamond Nat. Phys. 1 94-8
CrossRef 
[21]
Kaiser F, Jacques V, Batalov A, Siyushev P, Jelezko F and Wrachtrup J 2009 Polarization properties of single photons emitted by nitrogen-vacancy defect in diamond at low temperature arXiv:0906.3426
Preprint 
[22]
Gisin N, Ribordy G, Tittel W and Zbinden H 2002 Quantum cryptography Rev. Mod. Phys. 74 145
CrossRef 
[23]
Hong C K, Ou Z Y and Mandel L 1987 Measurement of subpicosecond time intervals between two photons by interference Phys. Rev. Lett. 59 2044-6
CrossRef  PubMed 
[24]
Maunz P, Moehring D L, Olmschenk S, Younge K C, Matsukevich D N and Monroe C 2007 Quantum interference of photon pairs from two remote trapped atomic ions Nat. Phys. 3 538-41
CrossRef 
[25]
Gerber S, Rotter D, Hennrich M, Blatt R, Rohde F, Schuck C, Almendros M, Gehr R, Dubin F and Eschner J 2009 Quantum interference from remotely trapped ions New. J. Phys. 11 013032
IOPscience 
[26]
Legero T, Wilk T, Hennrich M, Rempe G and Kuhn A 2004 Quantum beat of two single photons Phys. Rev. Lett. 93 070503
CrossRef  PubMed 
[27]
Beugnon J, Jones M P A, Dingjan J, Darquié B, Messin G, Browaeys A and Grangier P 2006 Quantum interference between two single photons emitted by independently trapped atoms Nature 440 779-82
CrossRef  PubMed 
[28]
Kiraz A, Ehrl M, Hellerer P, Müstecaplioglu O E, Braüchle and Zumbusch A 2005 Indistinguishable photons from a single molecule Phys. Rev. Lett. 94 223602
CrossRef  PubMed 
[29]
Lettow R, Ahtee V, Pfab R, Renn A, Ikonen E, Götzinger S and Sandoghdar V 2007 Realization of two Fourier-limited solid-state single-photon sources Opt. Express 15 15842-7
CrossRef  PubMed 
[30]
Santori C, Fattal D, Vuckovic J, Solomon G S and Yamamoto Y 2002 Indistinguishable photons from a single-photon device Nature 419 594-7
CrossRef  PubMed 
[31]
Laurent S, Varoutsis S, Le Gratiet L, Lematre A, Sagnes I, Raineri F, Levenson A, Robert-Philip I and Abram I 2005 Indistinguishable single photons from a single-quantum dot in a two-dimensional photonic crystal cavity Appl. Phys. Lett. 87 163107
CrossRef 
[32]
Bennett A J, Patel R B, Shields A J, Cooper K, Atkinson P, Nicoll C A and Ritchie D A 2008 Indistinguishable photons from a diode Appl. Phys. Lett. 92 193503
CrossRef 
[33]
Batalov A, Jacques V, Kaiser F, Siyushev P, Neumann P, Rogers L J, McMurtrie R L, Manson N B, Jelezko F and Wrachtrup J 2009 Low temperature studies of the excited-state structure of negatively charged nitrogen-vacancy color centers in diamond Phys. Rev. Lett. 102 195506
CrossRef  PubMed 
[34]
Jelezko F, Tietz C, Gruber A, Popa I, Nizovtsev A, Kilin S and Wrachtrup J 2001 Spectroscopy of Single N-V Centers in Diamond Single Mol. 2 255-60
CrossRef 
[35]
Shen Y, Sweeney T M and Wang H 2008 Zero-phonon linewidth of single nitrogen vacancy centers in diamond nanocrystals Phys. Rev. B 77 033201
CrossRef 
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