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We investigate the robustness of two-qubit gates to deviations of experimental controls, on a neutral atom platform utilizing Rydberg states.
Gounand, F., Calculation of radial matrix elements and radiative lifetimes for highly excited states of alkali atoms using the Coulomb approximation, J. Phys. France 40
1979
Earlier work this paper cites.
J. W. Farley and W. H. Wing, Accurate calculation of dynamic Stark shifts and depopulation rates of Rydberg energy levels induced by blackbody radiation. Hydrogen, helium, and alkali-metal atoms, Phys. Rev. A 23
1981
Earlier work this paper cites.
R. Beigang, K. Lücke, D. Schmidt, A. Timmermann, and P. J. West, One-Photon Laser Spectroscopy of Rydberg Series from Metastable Levels in Calcium and Strontium, Phys. Scr. 26
1982
Earlier work this paper cites.
M. J. Seaton, Quantum defect theory, Rep. Prog. Phys. 46
1983
Earlier work this paper cites.
S. M. Blinder, Propagators from integral representations of Green’s functions for the N‐dimensional free‐particle, harmonic oscillator and Coulomb problems, J. Math. Phys. 25
1984
Earlier work this paper cites.
M. Aymar, E. Luc-Koenig, and S. Watanabe, R-matrix calculation of eigenchannel multichannel quantum defect parameters for Strontium, J. Phys. B 20
1987
Earlier work this paper cites.
A. Barenco, C. H. Bennett, R. Cleve, D. P. DiVincenzo, N. Margolus, P. Shor, T. Sleator, J. A. Smolin, and H. Weinfurter, Elementary gates for quantum computation, Phys. Rev. A 52
1995
Earlier work this paper cites.
D. Jaksch, J. I. Cirac, P. Zoller, S. L. Rolston, R. Côté, and M. D. Lukin, Fast Quantum Gates for Neutral Atoms, Phys. Rev. Lett. 85
2000
Earlier work this paper cites.
D. A. Steck, Rubidium 87 D Line Data, (2003)
2003
Earlier work this paper cites.
M. Takamoto, F.-L. Hong, R. Higashi, and H. Katori, An optical lattice clock, Nature (London) 435
2005
Earlier work this paper cites.
A. J. Daley, M. M. Boyd, J. Ye, and P. Zoller, Quantum Computing with Alkaline-Earth-Metal Atoms, Phys. Rev. Lett. 101
2008
Earlier work this paper cites.
J. Ye, H. J. Kimble, and H. Katori, Quantum State Engineering and Precision Metrology Using State-Insensitive Light Traps, Science 320
2008
Earlier work this paper cites.
M. Saffman, T. G. Walker, and K. Mølmer, Quantum information with Rydberg atoms, Rev. Mod. Phys. 82
2010
Earlier work this paper cites.
R. Löw, H. Weimer, J. Nipper, J. B. Balewski, B. Butscher, H. P. Büchler, and T. Pfau, An experimental and theoretical guide to strongly interacting Rydberg gases, J. Phys. B 45
2012
Earlier work this paper cites.
X. L. Zhang, A. T. Gill, L. Isenhower, T. G. Walker, and M. Saffman, Fidelity of a Rydberg-blockade quantum gate from simulated quantum process tomography, Phys. Rev. A 85
2012
Earlier work this paper cites.
S. J. Devitt, W. J. Munro, and K. Nemoto, Quantum error correction for beginners, Rep. Prog. Phys. 76
2013
Earlier work this paper cites.
L. A. Jones, J. D. Carter, and J. D. D. Martin, Rydberg atoms with a reduced sensitivity to dc and low-frequency electric fields, Phys. Rev. A 87
2013
Earlier work this paper cites.
J. Johansson, P. Nation, and F. Nori, QuTiP 2: A Python framework for the dynamics of open quantum systems, Comput. Phys. Commun. 184
2013
Earlier work this paper cites.
M. S. Safronova, S. G. Porsev, U. I. Safronova, M. G. Kozlov, and C. W. Clark, Blackbody-radiation shift in the Sr optical atomic clock, Phys. Rev. A 87
2013
Earlier work this paper cites.
C. L. Vaillant, M. P. A. Jones, and R. M. Potvliege, Multichannel quantum defect theory of strontium bound Rydberg states, J. Phys. B 47
2014
Earlier work this paper cites.
M. H. Goerz, E. J. Halperin, J. M. Aytac, C. P. Koch, and K. B. Whaley, Robustness of high-fidelity Rydberg gates with single-site addressability, Phys. Rev. A 90
2014
Earlier work this paper cites.
S. Sevinçli and T. Pohl, Microwave control of Rydberg atom interactions, New J. Phys. 16
2014
Earlier work this paper cites.
P. Schauss, High-resolution imaging of ordering in Rydberg many-body systems , Ph.D. thesis , Ludwig-Maximilians-Universität München (2015)
2015
Earlier work this paper cites.
L. S. Theis, F. Motzoi, F. K. Wilhelm, and M. Saffman, High-fidelity Rydberg-blockade entangling gate using shaped, analytic pulses, Phys. Rev. A 94
2016
Cited alongside, same era.
M. Saffman, Quantum computing with atomic qubits and Rydberg interactions: progress and challenges, J. Phys. B 49
2016
Cited alongside, same era.
C. P. Koch, Controlling open quantum systems: tools, achievements, and limitations, J. Phys. Cond. Mat. 28
2016
Cited alongside, same era.
R. W. Heeres, P. Reinhold, N. Ofek, L. Frunzio, L. Jiang, M. H. Devoret, and R. J. Schoelkopf, Implementing a universal gate set on a logical qubit encoded in an oscillator, Nat. Commun. 8
2017
Cited alongside, same era.
D. Petrosyan, F. Motzoi, M. Saffman, and K. Mølmer, High-fidelity Rydberg quantum gate via a two-atom dark state, Phys. Rev. A 96
2017
Cited alongside, same era.
M. Werninghaus, D. J. Egger, F. Roy, S. Machnes, F. K. Wilhelm, and S. Filipp, Leakage reduction in fast superconducting qubit gates via optimal control, npj Quantum Information 7
2021
Later among the works it cites.
I. S. Madjarov, Entangling, Controlling, and Detecting Individual Strontium Atoms in Optical Tweezer Arrays , Ph.D. thesis , California Institute of Technology (2021)
2021
Later among the works it cites.
E. Robertson, N. Šibalić, R. Potvliege, and M. Jones, ARC 3.0: An expanded Python toolbox for atomic physics calculations, Comput. Phys. Commun. 261
2021
Later among the works it cites.
K.-N. Schymik, B. Ximenez, E. Bloch, D. Dreon, A. Signoles, F. Nogrette, D. Barredo, A. Browaeys, and T. Lahaye, In situ equalization of single-atom loading in large-scale optical tweezer arrays, Phys. Rev. A 106
2022
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S. Weber, C. Tresp, H. Menke, A. Urvoy, O. Firstenberg, H. P. Büchler, and S. Hofferberth, Tutorial: Calculation of Rydberg interaction potentials, J. Phys. B 50
2017
Cited alongside, same era.
J. Preskill, Quantum Computing in the NISQ era and beyond, Quantum 2
2018
Cited alongside, same era.
H. Levine, A. Keesling, A. Omran, H. Bernien, S. Schwartz, A. S. Zibrov, M. Endres, M. Greiner, V. Vuletić, and M. D. Lukin, High-Fidelity Control and Entanglement of Rydberg-Atom Qubits, Phys. Rev. Lett. 121
2018
Cited alongside, same era.
S. de Léséleuc, D. Barredo, V. Lienhard, A. Browaeys, and T. Lahaye, Analysis of imperfections in the coherent optical excitation of single atoms to Rydberg states, Phys. Rev. A 97
2018
Cited alongside, same era.
D. W. Booth, J. Isaacs, and M. Saffman, Reducing the sensitivity of Rydberg atoms to dc electric fields using two-frequency ac field dressing, Phys. Rev. A 97
2018
Cited alongside, same era.
A. Omran et al. , Generation and manipulation of Schrödinger cat states in Rydberg atom arrays, Science 365
2019
Cited alongside, same era.
T. Howell, B. Jackson, and Z. Manchester, ALTRO: A Fast Solver for Constrained Trajectory Optimization, in Proceedings of (IROS) IEEE/RSJ International Conference on Intelligent Robots and Systems (2019) pp. 7674 – 7679
2019
Cited alongside, same era.
2022
Closest in time.
S. Jandura and G. Pupillo, Time-Optimal Two- and Three-Qubit Gates for Rydberg Atoms, Quantum 6
2022
Closest in time.
A. Pagano, S. Weber, D. Jaschke, T. Pfau, F. Meinert, S. Montangero, and H. P. Büchler, Error budgeting for a controlled-phase gate with strontium-88 Rydberg atoms, Phys. Rev. Research 4
2022
Closest in time.
E. S. Matekole, Y.-L. L. Fang, and M. Lin, Methods and Results for Quantum Optimal Pulse Control on Superconducting Qubit Systems, in 2022 IEEE International Parallel and Distributed Processing Symposium Workshops (IPDPSW) (2022) pp. 600–606
2022
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J. R. Weggemans, A. Urech, A. Rausch, R. Spreeuw, R. Boucherie, F. Schreck, K. Schoutens, J. Minář, and F. Speelman, Solving correlation clustering with QAOA and a Rydberg qudit system: a full-stack approach, Quantum 6
2022
Closest in time.
N. Chen, L. Li, W. Huie, M. Zhao, I. Vetter, C. H. Greene, and J. P. Covey, Analyzing the Rydberg-based optical-metastable-ground architecture for Yb 171 {}^{171}\mathrm{Yb} nuclear spins, Phys. Rev. A 105
2022
Closest in time.
I. Cong, H. Levine, A. Keesling, D. Bluvstein, S.-T. Wang, and M. D. Lukin, Hardware-Efficient, Fault-Tolerant Quantum Computation with Rydberg Atoms, Phys. Rev. X 12
2022
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T. Propson, B. E. Jackson, J. Koch, Z. Manchester, and D. I. Schuster, Robust Quantum Optimal Control with Trajectory Optimization, Phys. Rev. Applied 17
2022
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2022
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2022
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2022
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J. T. Wilson, S. Saskin, Y. Meng, S. Ma, R. Dilip, A. P. Burgers, and J. D. Thompson, Trapping Alkaline Earth Rydberg Atoms Optical Tweezer Arrays, Phys. Rev. Lett. 128
2022
Closest in time.
D. Bluvstein et al. , A quantum processor based on coherent transport of entangled atom arrays, Nature (London) 604
2022
Closest in time.
2022
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2022
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