Metrology of Quantum Control and Measurement in Superconducting Qubits
暂无分享,去创建一个
[1] B. Josephson. Possible new effects in superconductive tunnelling , 1962 .
[2] Michael Vissers,et al. Reduced microwave loss in trenched superconducting coplanar waveguides , 2012 .
[3] J. Martinis,et al. Fast adiabatic qubit gates using only σ z control , 2014, 1402.5467.
[4] Yoshihisa Yamamoto,et al. Quantum simulation of the t-J model , 2002 .
[5] S. A. Lyon,et al. Electron spin relaxation times of phosphorus donors in silicon , 2003 .
[6] D M Lucas,et al. High-fidelity readout of trapped-ion qubits. , 2008, Physical review letters.
[7] Austin G. Fowler,et al. Understanding the effects of leakage in superconducting quantum-error-detection circuits , 2013, 1306.0925.
[8] King,et al. Demonstration of a fundamental quantum logic gate. , 1995, Physical review letters.
[9] William J. Munro,et al. Using Quantum Computers for Quantum Simulation , 2010, Entropy.
[10] Christine Guerlin,et al. Dicke quantum phase transition with a superfluid gas in an optical cavity , 2009, Nature.
[11] Adolfo del Campo,et al. Quantum supremacy of many-particle thermal machines , 2015, 1510.04633.
[12] Erik Lucero,et al. 1/f Flux noise in Josephson phase qubits. , 2007, Physical review letters.
[13] L Frunzio,et al. High-fidelity readout in circuit quantum electrodynamics using the Jaynes-Cummings nonlinearity. , 2010, Physical review letters.
[14] Amrit De. Fast Quantum Control for Weakly Nonlinear Qubits: On Two-Quadrature Adiabatic Gates , 2015 .
[15] C. Monroe,et al. Onset of a quantum phase transition with a trapped ion quantum simulator. , 2011, Nature communications.
[16] Efstratios Manousakis,et al. A Quantum-Dot Array as Model for Copper-Oxide Superconductors: A Dedicated Quantum Simulator for the Many-Fermion Problem , 2002, cond-mat/0201142.
[17] G. J. Dolan,et al. Offset masks for lift‐off photoprocessing , 1977 .
[18] Nan Zhao,et al. Coherent control of single spins in silicon carbide at room temperature. , 2014, Nature Materials.
[19] Joseph Emerson,et al. Scalable and robust randomized benchmarking of quantum processes. , 2010, Physical review letters.
[20] Austin G. Fowler,et al. Characterization and reduction of capacitive loss induced by sub-micron Josephson junction fabrication in superconducting qubits , 2017, 1706.00879.
[21] E. Jaynes,et al. Comparison of quantum and semiclassical radiation theories with application to the beam maser , 1962 .
[22] C. Monroe,et al. Large-scale modular quantum-computer architecture with atomic memory and photonic interconnects , 2012, 1208.0391.
[23] John Bardeen,et al. Physical principles involved in transistor action , 1949, Bell Syst. Tech. J..
[24] J. Emerson,et al. Scalable noise estimation with random unitary operators , 2005, quant-ph/0503243.
[25] D. DiVincenzo,et al. Quantum computation with quantum dots , 1997, cond-mat/9701055.
[26] C. Weisbuch,et al. Quantum Semiconductor Structures: Fundamentals and Applications , 1991 .
[27] M. Head‐Gordon,et al. Simulated Quantum Computation of Molecular Energies , 2005, Science.
[28] P. Grangier,et al. Single photon quantum cryptography. , 2002, Physical Review Letters.
[29] Frederick W Strauch,et al. Quantum logic gates for coupled superconducting phase qubits. , 2003, Physical review letters.
[30] C. Porter,et al. Fluctuations of Nuclear Reaction Widths , 1956 .
[31] Clare C. Yu,et al. Decoherence in Josephson qubits from dielectric loss. , 2005, Physical review letters.
[32] G. Ponchak,et al. Excitation of coupled slotline mode in finite-ground CPW with unequal ground-plane widths , 2005, IEEE Transactions on Microwave Theory and Techniques.
[33] P. Leek,et al. Coherence and decay of higher energy levels of a superconducting transmon qubit. , 2014, Physical review letters.
[34] B. Lanyon,et al. Towards quantum chemistry on a quantum computer. , 2009, Nature chemistry.
[35] M. A. Rol,et al. Restless Tuneup of High-Fidelity Qubit Gates , 2016, 1611.04815.
[36] Felix Motzoi,et al. Improving frequency selection of driven pulses using derivative-based transition suppression , 2013, 1310.8363.
[37] Scott Aaronson,et al. Improved Simulation of Stabilizer Circuits , 2004, ArXiv.
[38] R. Feynman. Simulating physics with computers , 1999 .
[39] W. W. Hansen,et al. Nuclear Induction , 2011 .
[40] C. Wen. Coplanar Waveguide, a Surface Strip Transmission Line Suitable for Nonreciprocal Gyromagnetic Device Applications , 1969 .
[41] C. Monroe,et al. Quantum dynamics of single trapped ions , 2003 .
[42] Thierry Paul,et al. Quantum computation and quantum information , 2007, Mathematical Structures in Computer Science.
[43] P. Cochat,et al. Et al , 2008, Archives de pediatrie : organe officiel de la Societe francaise de pediatrie.
[44] Lov K. Grover. Quantum Mechanics Helps in Searching for a Needle in a Haystack , 1997, quant-ph/9706033.
[45] A N Cleland,et al. Optimal quantum control using randomized benchmarking. , 2014, Physical review letters.
[46] Jay M. Gambetta,et al. Improved superconducting qubit coherence using titanium nitride , 2013, 1303.4071.
[47] A. Calderbank,et al. Quantum Error Correction and Orthogonal Geometry , 1996, quant-ph/9605005.
[48] Steane,et al. Error Correcting Codes in Quantum Theory. , 1996, Physical review letters.
[49] Peter Májek,et al. Quantum Error Correcting Codes , 2005 .
[50] Y. Okuyama,et al. High Dose Ion Implantation into Photoresist , 1978 .
[51] Fabio Sciarrino,et al. Towards quantum supremacy with lossy scattershot boson sampling , 2016, 1610.02279.
[52] L. DiCarlo,et al. Fast reset and suppressing spontaneous emission of a superconducting qubit , 2010, 1003.0142.
[53] Alexandre Blais,et al. Nonlinear dispersive regime of cavity QED: The dressed dephasing model , 2008, 0803.0311.
[54] Zijun Chen,et al. Strong environmental coupling in a Josephson parametric amplifier , 2014, 1401.3799.
[55] John Clarke,et al. Flicker (1/f) noise in tunnel junction dc SQUIDS , 1983 .
[56] Matthew Sellars,et al. Nitrogen-vacancy center in diamond: Model of the electronic structure and associated dynamics , 2006 .
[57] Steven M. Girvin,et al. Circuit QED: Superconducting Qubits Coupled to Microwave Photons , 2015 .
[58] T. Gudmundsen,et al. Thermal and Residual Excited-State Population in a 3D Transmon Qubit. , 2014, Physical review letters.
[59] R. Jozsa,et al. Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy , 2010, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[60] D. E. Maxwell,et al. Spin Echo Measurements of Nuclear Spin Coupling in Molecules , 1952 .
[61] J. Gambetta,et al. Procedure for systematically tuning up cross-talk in the cross-resonance gate , 2016, 1603.04821.
[62] L. DiCarlo,et al. Reducing intrinsic loss in superconducting resonators by surface treatment and deep etching of silicon substrates , 2015, 1502.04082.
[63] Christoph Dankert,et al. Exact and approximate unitary 2-designs and their application to fidelity estimation , 2009 .
[64] Erik Lucero,et al. Wirebond crosstalk and cavity modes in large chip mounts for superconducting qubits , 2010, 1011.4982.
[65] R. Barends,et al. Superconducting quantum circuits at the surface code threshold for fault tolerance , 2014, Nature.
[66] J. P. Dehollain,et al. An addressable quantum dot qubit with fault-tolerant control-fidelity. , 2014, Nature nanotechnology.
[67] D. Rugar,et al. Nanoscale Nuclear Magnetic Resonance with a Nitrogen-Vacancy Spin Sensor , 2013, Science.
[68] J M Gambetta,et al. Measurement-induced qubit state mixing in circuit QED from up-converted dephasing noise. , 2012, Physical review letters.
[69] H. Neven,et al. Characterizing quantum supremacy in near-term devices , 2016, Nature Physics.
[70] Gottesman. Class of quantum error-correcting codes saturating the quantum Hamming bound. , 1996, Physical review. A, Atomic, molecular, and optical physics.
[71] Zijun Chen,et al. Measurement-Induced State Transitions in a Superconducting Qubit: Beyond the Rotating Wave Approximation. , 2016, Physical review letters.
[72] R. Simons. Coplanar waveguide circuits, components, and systems , 2001 .
[73] R. B. Blakestad,et al. Microfabricated surface-electrode ion trap for scalable quantum information processing. , 2006, Physical review letters.
[74] Jay M. Gambetta,et al. Preparation and measurement of three-qubit entanglement in a superconducting circuit , 2010, Nature.
[75] S Giovanazzi. Hawking radiation in sonic black holes. , 2005, Physical review letters.
[76] J. Cirac,et al. Effective quantum spin systems with trapped ions. , 2004, Physical Review Letters.
[77] John Clarke,et al. Design and measurement of improved capacitively-shunted flux qubits , 2014 .
[78] N. Linke,et al. High-Fidelity Preparation, Gates, Memory, and Readout of a Trapped-Ion Quantum Bit. , 2014, Physical review letters.
[79] Simon J. Devitt,et al. Blueprint for a microwave trapped ion quantum computer , 2015, Science Advances.
[80] L Frunzio,et al. ac Stark shift and dephasing of a superconducting qubit strongly coupled to a cavity field. , 2005, Physical review letters.
[81] Shor,et al. Scheme for reducing decoherence in quantum computer memory. , 1995, Physical review. A, Atomic, molecular, and optical physics.
[82] R. Barends,et al. Coherent Josephson qubit suitable for scalable quantum integrated circuits. , 2013, Physical review letters.
[83] C. Quintana,et al. Superconducting flux qubits for high-connectivity quantum annealing without lossy dielectrics , 2017 .
[84] Peter W. Shor,et al. Algorithms for quantum computation: discrete logarithms and factoring , 1994, Proceedings 35th Annual Symposium on Foundations of Computer Science.
[85] Austin G. Fowler,et al. Coping with qubit leakage in topological codes , 2013, 1308.6642.
[86] Akira Endo,et al. Development of NbTiN-Al Direct Antenna Coupled Kinetic Inductance Detectors , 2012 .
[87] J. Cirac,et al. Quantum Computations with Cold Trapped Ions. , 1995, Physical review letters.
[88] Debbie W. Leung,et al. Realization of quantum process tomography in NMR , 2000, quant-ph/0012032.
[89] N. Linke,et al. High-Fidelity Quantum Logic Gates Using Trapped-Ion Hyperfine Qubits. , 2015, Physical review letters.
[90] Aephraim M. Steinberg,et al. Diagnosis, prescription, and prognosis of a bell-state filter by quantum process tomography. , 2003, Physical review letters.
[91] Robert McDermott,et al. Origin and Reduction of 1 / f Magnetic Flux Noise in Superconducting Devices , 2016 .
[92] Raymond Laflamme,et al. Estimating the Coherence of Noise in Quantum Control of a Solid-State Qubit. , 2016, Physical review letters.
[93] Daniel Sank,et al. Fast accurate state measurement with superconducting qubits. , 2014, Physical review letters.
[94] Zijun Chen,et al. Measuring and Suppressing Quantum State Leakage in a Superconducting Qubit. , 2015, Physical review letters.
[95] E. Lucero,et al. Planar Superconducting Resonators with Internal Quality Factors above One Million , 2012, 1201.3384.
[96] John M. Martinis,et al. Fluctuations from edge defects in superconducting resonators , 2013, 1306.3718.
[97] S. Meiboom,et al. Modified Spin‐Echo Method for Measuring Nuclear Relaxation Times , 1958 .
[98] J. Gambetta,et al. Efficient Z gates for quantum computing , 2016, 1612.00858.
[99] E. Knill,et al. Randomized Benchmarking of Quantum Gates , 2007, 0707.0963.
[100] Bob B. Buckley,et al. Room temperature coherent control of defect spin qubits in silicon carbide , 2011, Nature.
[101] E. Knill,et al. Single-qubit-gate error below 10 -4 in a trapped ion , 2011, 1104.2552.
[102] M. Mariantoni,et al. Surface codes: Towards practical large-scale quantum computation , 2012, 1208.0928.
[103] John Clarke,et al. Heralded state preparation in a superconducting qubit. , 2012, Physical review letters.
[104] L. Vandersypen,et al. Single-shot read-out of an individual electron spin in a quantum dot , 2004, Nature.
[105] Steven T. Flammia,et al. Estimating the coherence of noise , 2015, 1503.07865.
[106] Jens Koch,et al. Controlling the spontaneous emission of a superconducting transmon qubit. , 2008, Physical review letters.
[107] S. Girvin,et al. Cavity quantum electrodynamics for superconducting electrical circuits: An architecture for quantum computation , 2004, cond-mat/0402216.
[108] Daniel Sank,et al. Flux noise probed with real time qubit tomography in a Josephson phase qubit. , 2012, Physical review letters.
[109] Andrew W. Cross,et al. Implementing a strand of a scalable fault-tolerant quantum computing fabric , 2013, Nature Communications.
[110] W. Skocpol,et al. Critical currents of superconducting microbridges , 1976 .
[111] J. M. Gambetta,et al. Analytic control methods for high-fidelity unitary operations in a weakly nonlinear oscillator , 2010, 1011.1949.
[112] P. Coveney,et al. Scalable Quantum Simulation of Molecular Energies , 2015, 1512.06860.
[113] W. Wootters,et al. A single quantum cannot be cloned , 1982, Nature.
[114] Viola,et al. Theory of quantum error correction for general noise , 2000, Physical review letters.
[115] Erik Lucero,et al. Reduced phase error through optimized control of a superconducting qubit , 2010, 1007.1690.
[116] K. R. Williams,et al. Etch rates for micromachining processing-Part II , 2003 .
[117] M. Devoret. Quantum Fluctuations in Electrical Circuits , 1997 .
[118] S. Olmschenk,et al. Ion trap in a semiconductor chip , 2006 .
[119] D. Wineland,et al. Trapped Ions, Laser Cooling, and Better Clocks , 1984, Science.
[120] John M. Martinis,et al. Supplementary information for : Overcoming non-markovian noise in quantum systems : How mediocre clocks make good qubits , 2014 .
[121] Linda P. B. Katehi,et al. Electromagnetic coupling and radiation loss considerations in microstrip (M)MIC design , 1991 .
[122] N F Ramsey. Experiments with separated oscillatory fields and hydrogen masers. , 1990, Science.
[123] D. Wineland,et al. Progress at NIST toward absolute frequency standards using stored ions , 1989, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[124] M. Greiner,et al. Quantum simulation of antiferromagnetic spin chains in an optical lattice , 2011, Nature.
[125] E. Wigner,et al. On the statistical distribution of the widths and spacings of nuclear resonance levels , 1951, Mathematical Proceedings of the Cambridge Philosophical Society.
[126] Alexander N. Korotkov,et al. Measuring a transmon qubit in circuit QED: Dressed squeezed states , 2016, 1606.04204.
[127] John M. Martinis,et al. State preservation by repetitive error detection in a superconducting quantum circuit , 2015, Nature.
[128] M. Lukin,et al. A robust scanning diamond sensor for nanoscale imaging with single nitrogen-vacancy centres. , 2011, Nature nanotechnology.
[129] A. Fowler,et al. High-threshold universal quantum computation on the surface code , 2008, 0803.0272.
[130] Luigi Frunzio,et al. Optimized driving of superconducting artificial atoms for improved single-qubit gates , 2010 .
[131] Willis E. Lamb,et al. Fine Structure of the Hydrogen Atom by a Microwave Method , 1947 .
[132] T. Guhr,et al. RANDOM-MATRIX THEORIES IN QUANTUM PHYSICS : COMMON CONCEPTS , 1997, cond-mat/9707301.
[133] Erik Lucero,et al. Microwave dielectric loss at single photon energies and millikelvin temperatures , 2008, 0802.2404.
[134] L. DiCarlo,et al. Demonstration of two-qubit algorithms with a superconducting quantum processor , 2009, Nature.
[135] Sarah Sheldon,et al. Characterizing errors on qubit operations via iterative randomized benchmarking , 2015, 1504.06597.
[136] Yasunobu Nakamura,et al. Improving quantum gate fidelities by using a qubit to measure microwave pulse distortions. , 2012, Physical review letters.
[137] Zijun Chen,et al. Fabrication and characterization of aluminum airbridges for superconducting microwave circuits , 2013, 1310.2325.
[138] R. McDermott,et al. Materials Origins of Decoherence in Superconducting Qubits , 2009, IEEE Transactions on Applied Superconductivity.
[139] John Preskill,et al. Quantum computing and the entanglement frontier , 2012, 1203.5813.
[140] John M. Martinis,et al. Characterization and reduction of microfabrication-induced decoherence in superconducting quantum circuits , 2014, 1407.4769.
[141] J M Gambetta,et al. Simple pulses for elimination of leakage in weakly nonlinear qubits. , 2009, Physical review letters.
[142] D. Gottesman. The Heisenberg Representation of Quantum Computers , 1998, quant-ph/9807006.
[143] A. Kitaev,et al. Quantum codes on a lattice with boundary , 1998, quant-ph/9811052.
[144] N. Peres,et al. Field-Effect Tunneling Transistor Based on Vertical Graphene Heterostructures , 2011, Science.
[145] Erik Lucero,et al. Surface loss simulations of superconducting coplanar waveguide resonators , 2011, 1107.4698.
[146] T. Ralph,et al. Quantum process tomography of a controlled-NOT gate. , 2004, Physical review letters.
[147] S. Girvin,et al. Charge-insensitive qubit design derived from the Cooper pair box , 2007, cond-mat/0703002.
[148] A. Umerski,et al. Theory of tunneling magnetoresistance of an epitaxial Fe/MgO/Fe(001) junction , 2001 .