Geometric Phase of a Transmon in a Dissipative Quantum Circuit

被引:0
作者
Viotti, Ludmila [1 ]
Lombardo, Fernando C. [2 ,3 ]
Villar, Paula I. [2 ,3 ]
机构
[1] Abdus Salam Int Ctr Theoret Phys, Str Costiera 11, I-34151 Trieste, Italy
[2] Univ Buenos Aires, Fac Ciencias Exactas & Nat, Dept Fis, RA-1428 Buenos Aires, Argentina
[3] Univ Buenos Aires, Inst Fis Buenos Aires IFIBA, CONICET, RA-1428 Buenos Aires, Argentina
关键词
geometric phases; circuit QED; Kerr coupling; SUPERPOSITION; STATES;
D O I
10.3390/e26010089
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Superconducting circuits reveal themselves as promising physical devices with multiple uses. Within those uses, the fundamental concept of the geometric phase accumulated by the state of a system shows up recurrently, as, for example, in the construction of geometric gates. Given this framework, we study the geometric phases acquired by a paradigmatic setup: a transmon coupled to a superconductor resonating cavity. We do so both for the case in which the evolution is unitary and when it is subjected to dissipative effects. These models offer a comprehensive quantum description of an anharmonic system interacting with a single mode of the electromagnetic field within a perfect or dissipative cavity, respectively. In the dissipative model, the non-unitary effects arise from dephasing, relaxation, and decay of the transmon coupled to its environment. Our approach enables a comparison of the geometric phases obtained in these models, leading to a thorough understanding of the corrections introduced by the presence of the environment.
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页数:16
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共 57 条
[1]   Experimental realization of non-Abelian non-adiabatic geometric gates [J].
Abdumalikov, A. A., Jr. ;
Fink, J. M. ;
Juliusson, K. ;
Pechal, M. ;
Berger, S. ;
Wallraff, A. ;
Filipp, S. .
NATURE, 2013, 496 (7446) :482-485
[2]   PHASE-CHANGE DURING A CYCLIC QUANTUM EVOLUTION [J].
AHARONOV, Y ;
ANANDAN, J .
PHYSICAL REVIEW LETTERS, 1987, 58 (16) :1593-1596
[3]   Investigating the Individual Performances of Coupled Superconducting Transmon Qubits [J].
Ahmad, Halima Giovanna ;
Jordan, Caleb ;
van den Boogaart, Roald ;
Waardenburg, Daan ;
Zachariadis, Christos ;
Mastrovito, Pasquale ;
Georgiev, Asen Lyubenov ;
Montemurro, Domenico ;
Pepe, Giovanni Piero ;
Arthers, Marten ;
Bruno, Alessandro ;
Tafuri, Francesco ;
Mukhanov, Oleg ;
Arzeo, Marco ;
Massarotti, Davide .
CONDENSED MATTER, 2023, 8 (01)
[4]   NON-ADIABATIC NON-ABELIAN GEOMETRIC PHASE [J].
ANANDAN, J .
PHYSICS LETTERS A, 1988, 133 (4-5) :171-175
[5]   Violation of Bell's inequality in Josephson phase qubits [J].
Ansmann, Markus ;
Wang, H. ;
Bialczak, Radoslaw C. ;
Hofheinz, Max ;
Lucero, Erik ;
Neeley, M. ;
O'Connell, A. D. ;
Sank, D. ;
Weides, M. ;
Wenner, J. ;
Cleland, A. N. ;
Martinis, John M. .
NATURE, 2009, 461 (7263) :504-506
[6]   Connecting Berry's phase and the pumped charge in a Cooper pair pump [J].
Aunola, M ;
Toppari, JJ .
PHYSICAL REVIEW B, 2003, 68 (02)
[7]   Hardware-Efficient Leakage-Reduction Scheme for Quantum Error Correction with Superconducting Transmon Qubits [J].
Battistel, F. ;
Varbanov, B. M. ;
Terhal, B. M. .
PRX QUANTUM, 2021, 2 (03)
[8]   Geometric phases in superconducting qubits beyond the two-level approximation [J].
Berger, S. ;
Pechal, M. ;
Pugnetti, S. ;
Abdumalikov, A. A., Jr. ;
Steffen, L. ;
Fedorov, A. ;
Wallraff, A. ;
Filipp, S. .
PHYSICAL REVIEW B, 2012, 85 (22)
[10]   Circuit quantum electrodynamics [J].
Blais, Alexandre ;
Grimsmo, Arne L. ;
Girvin, S. M. ;
Wallraffe, Andreas .
REVIEWS OF MODERN PHYSICS, 2021, 93 (02)