Test Systems for Quantum Information Processing
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Dieter Suter | Ion Geru | D. Suter | I. Geru
[1] Bob B. Buckley,et al. Room temperature coherent control of defect spin qubits in silicon carbide , 2011, Nature.
[2] M. B. Plenio,et al. Quantum gates and memory using microwave-dressed states , 2011, Nature.
[3] An endohedral fullerene-based nuclear spin quantum computer , 2011 .
[4] Adam Gali,et al. 13C hyperfine interactions in the nitrogen-vacancy centre in diamond , 2011 .
[5] Richard M. Brown,et al. Entanglement in a solid-state spin ensemble , 2010, Nature.
[6] Neil B. Manson,et al. The negatively charged nitrogen-vacancy centre in diamond: the electronic solution , 2010, 1008.5224.
[7] Edwige Otero,et al. Quantum tunnelling of the magnetization in a monolayer of oriented single-molecule magnets , 2010, Nature.
[8] L. Hollenberg,et al. Single-shot readout of an electron spin in silicon , 2010, Nature.
[9] J. H. Müller,et al. Quantum memories , 2010, 1003.1107.
[10] Matthew Sellars,et al. Demonstration of the reduction of decoherent errors in a solid-state qubit using dynamic decoupling techniques , 2009 .
[11] S. A. Moiseev,et al. Photon‐echo quantum memory in solid state systems , 2009 .
[12] Rufus L. Cone,et al. Effects of Magnetic Field Orientation on Optical Decoherence in Er3+: Y2 SiO5 , 2009 .
[13] Jacob M. Taylor,et al. Nanoscale magnetic sensing with an individual electronic spin in diamond , 2008, Nature.
[14] Matthew Sellars,et al. Analytic treatment of controlled reversible inhomogeneous broadening quantum memories for light using two-level atoms , 2008 .
[15] Carsten Timm,et al. Tunnelling spectra of individual magnetic endofullerene molecules. , 2008, Nature materials.
[16] L. Vandersypen,et al. Spins in few-electron quantum dots , 2006, cond-mat/0610433.
[17] L A Coldren,et al. Nondestructive Optical Measurements of a Single Electron Spin in a Quantum Dot , 2006, Science.
[18] Matthew Sellars,et al. Characterization of the hyperfine interaction in europium-doped yttrium orthosilicate and europium chloride hexahydrate , 2006 .
[19] L. Childress,et al. Supporting Online Material for , 2006 .
[20] Fedor Jelezko,et al. Single defect centres in diamond: A review , 2006 .
[21] M. Stutzmann,et al. Electrical detection of coherent 31P spin quantum states , 2006, quant-ph/0607178.
[22] L. Rippe,et al. Scalable designs for quantum computing with rare-earth-ion-doped crystals , 2006, quant-ph/0601141.
[23] Multigigahertz range-Doppler correlative signal processing in optical memory crystals. , 2006, Applied optics.
[24] J. Longdell,et al. Photon echoes produced by switching electric fields. , 2005, Physical review letters.
[25] M. Nilsson,et al. Quantum memory for nonstationary light fields based on controlled reversible inhomogeneous broadening , 2005, quant-ph/0502184.
[26] J. Morton,et al. Coherence of spin qubits in silicon , 2005, cond-mat/0512705.
[27] J. Longdell,et al. Stopped light with storage times greater than one second using electromagnetically induced transparency in a solid. , 2005, Physical review letters.
[28] L. Vandersypen,et al. Single-shot readout of electron spin states in a quantum dot using spin-dependent tunnel rates. , 2004, Physical Review Letters.
[29] J. Longdell,et al. Dynamic decoherence control of a solid-state nuclear-quadrupole qubit. , 2004, Physical review letters.
[30] M. Mehring,et al. Pseudoentanglement of spin states in the multilevel 15N@C60 system. , 2004, Physical review letters.
[31] E. Yablonovitch,et al. Electrical detection of the spin resonance of a single electron in a silicon field-effect transistor , 2004, Nature.
[32] P. Hawrylak,et al. Exciton dephasing in quantum dot molecules , 2004, InternationalQuantum Electronics Conference, 2004. (IQEC)..
[33] J. Longdell,et al. Demonstration of conditional quantum phase shift between ions in a solid. , 2004, Physical review letters.
[34] D. Gammon,et al. Optical read-out and initialization of an electron spin in a single quantum dot , 2003, Postconference Digest Quantum Electronics and Laser Science, 2003. QELS..
[35] M. Lukin. Colloquium: Trapping and manipulating photon states in atomic ensembles , 2003 .
[36] Mark A. Eriksson,et al. Practical design and simulation of silicon-based quantum-dot qubits , 2003 .
[37] S. Das Sarma,et al. Electron spin coherence in semiconductors: Considerations for a spin-based solid-state quantum computer architecture , 2002, cond-mat/0203101.
[38] V. L. Korenev,et al. Optical orientation and the Hanle effect of neutral and negatively charged excitons in GaAs/Al x Ga 1-x As quantum wells , 2002 .
[39] Jason Twamley,et al. Architectures for a Spin Quantum Computer Based on Endohedral Fullerenes , 2002 .
[40] Wolfgang Werner Langbein,et al. Rabi oscillations in the excitonic ground-state transition of InGaAs quantum dots , 2002 .
[41] A. Zrenner,et al. Coherent properties of a two-level system based on a quantum-dot photodiode , 2002, Nature.
[42] Robert H. Blick,et al. Probing and Controlling the Bonds of an Artificial Molecule , 2002, Science.
[43] C. Wunderlich,et al. Self-learning estimation of quantum states , 2002 .
[44] Dieter Suter,et al. Scalable architecture for spin-based quantum computers with a single type of gate , 2002 .
[45] A. Khaetskii,et al. Electron spin decoherence in quantum dots due to interaction with nuclei. , 2002, Physical review letters.
[46] Stefan Kröll,et al. Quantum computer hardware based on rare-earth-ion-doped inorganic crystals , 2002 .
[47] S. Kröll,et al. Complete reconstruction of the quantum state of a single-photon wave packet absorbed by a Doppler-broadened transition. , 2001, Physical review letters.
[48] M. Lukin,et al. Storage of light in atomic vapor. , 2000, Physical review letters.
[49] Michael N. Leuenberger,et al. Quantum computing in molecular magnets , 2000, Nature.
[50] M. Waiblinger. Untersuchungen der endohedralen Fullerene mit eingeschlossenen Stickstoff- und Phosphor-Atomen , 2001 .
[51] I. Chuang,et al. Quantum Computation and Quantum Information: Bibliography , 2010 .
[52] Costantino S. Yannoni,et al. Liquid-State NMR Quantum Computing , 2000, quant-ph/0012108.
[53] D. DiVincenzo,et al. The Physical Implementation of Quantum Computation , 2000, quant-ph/0002077.
[54] Kang L. Wang,et al. Electron-spin-resonance transistors for quantum computing in silicon-germanium heterostructures , 1999, quant-ph/9905096.
[55] K. Kordatos,et al. Room temperature manipulation of the heterofullerene C59N on Si(100)-2×1 , 1999 .
[56] B. W. Broer,et al. Spontaneous emission spectrum in double quantum dot devices , 1998, Science.
[57] B. E. Kane. A silicon-based nuclear spin quantum computer , 1998, Nature.
[58] J. Preskill. Reliable quantum computers , 1997, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[59] G. Abstreiter,et al. Coupled quantum dots fabricated by cleaved edge overgrowth: from artificial atoms to molecules , 1997, Science.
[60] C. Sangregorio,et al. QUANTUM TUNNELING OF THE MAGNETIZATION IN AN IRON CLUSTER NANOMAGNET , 1997 .
[61] S. Harris,et al. Electromagnetically Induced Transparency , 1991, QELS '97., Summaries of Papers Presented at the Quantum Electronics and Laser Science Conference.
[62] L. Thomas,et al. Macroscopic quantum tunnelling of magnetization in a single crystal of nanomagnets , 1996, Nature.
[63] Friedman,et al. Macroscopic measurement of resonant magnetization tunneling in high-spin molecules. , 1996, Physical review letters.
[64] T. Mossberg,et al. Demonstration of 8-Gbit/in.(2) areal storage density based on swept-carrier frequency-selective optical memory. , 1995, Optics letters.
[65] W. Wootters,et al. A single quantum cannot be cloned , 1982, Nature.
[66] L. Mandel,et al. Photon Antibunching in Resonance Fluorescence , 1977 .
[67] E. A. Gere,et al. Electron Spin Resonance Experiments on Donors in Silicon. II. Electron Spin Relaxation Effects , 1959 .
[68] S. Meiboom,et al. Modified Spin‐Echo Method for Measuring Nuclear Relaxation Times , 1958 .
[69] E. Bauer. Phänomenologische Theorie der Kristallabscheidung an Oberflächen. I , 1958 .
[70] E. Purcell,et al. Effects of Diffusion on Free Precession in Nuclear Magnetic Resonance Experiments , 1954 .
[71] J. V. Vleck. The Puzzle of Rare-earth Spectra in Solids. , 1937 .