Quantum emulation of the transient dynamics in the multistate Landau-Zener model

被引:5
作者
Stehli, Alexander [1 ]
Brehm, Jan David [1 ]
Wolz, Tim [1 ]
Schneider, Andre [1 ]
Rotzinger, Hannes [1 ,2 ]
Weides, Martin [3 ]
Ustinov, Alexey V. [1 ,2 ]
机构
[1] Karlsruhe Inst Technol, Inst Phys, Karlsruhe, Germany
[2] Karlsruhe Inst Technol, Inst Quantum Mat & Technol, Eggenstein Leopoldshafen, Germany
[3] Univ Glasgow, James Watt Sch Engn, Glasgow, Scotland
基金
英国工程与自然科学研究理事会; 欧洲研究理事会;
关键词
!text type='PYTHON']PYTHON[!/text] FRAMEWORK; TRANSITION; QUTIP;
D O I
10.1038/s41534-023-00731-7
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Quantum simulation is one of the most promising near term applications of quantum computing. Especially, systems with a large Hilbert space are hard to solve for classical computers and thus ideal targets for a simulation with quantum hardware. In this work, we study experimentally the transient dynamics in the multistate Landau-Zener model as a function of the Landau-Zener velocity. The underlying Hamiltonian is emulated by superconducting quantum circuit, where a tunable transmon qubit is coupled to a bosonic mode ensemble comprising four lumped element microwave resonators. We investigate the model for different initial states: Due to our circuit design, we are not limited to merely exciting the qubit, but can also pump the harmonic modes via a dedicated drive line. Here, the nature of the transient dynamics depends on the average photon number in the excited resonator. The greater effective coupling strength between qubit and higher Fock states results in a quasi-adiabatic transition, where coherent quantum oscillations are suppressed without the introduction of additional loss channels. Our experiments pave the way for more complex simulations with qubits coupled to an engineered bosonic mode spectrum.
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页数:5
相关论文
共 33 条
[1]   Quantum supremacy using a programmable superconducting processor [J].
Arute, Frank ;
Arya, Kunal ;
Babbush, Ryan ;
Bacon, Dave ;
Bardin, Joseph C. ;
Barends, Rami ;
Biswas, Rupak ;
Boixo, Sergio ;
Brandao, Fernando G. S. L. ;
Buell, David A. ;
Burkett, Brian ;
Chen, Yu ;
Chen, Zijun ;
Chiaro, Ben ;
Collins, Roberto ;
Courtney, William ;
Dunsworth, Andrew ;
Farhi, Edward ;
Foxen, Brooks ;
Fowler, Austin ;
Gidney, Craig ;
Giustina, Marissa ;
Graff, Rob ;
Guerin, Keith ;
Habegger, Steve ;
Harrigan, Matthew P. ;
Hartmann, Michael J. ;
Ho, Alan ;
Hoffmann, Markus ;
Huang, Trent ;
Humble, Travis S. ;
Isakov, Sergei V. ;
Jeffrey, Evan ;
Jiang, Zhang ;
Kafri, Dvir ;
Kechedzhi, Kostyantyn ;
Kelly, Julian ;
Klimov, Paul V. ;
Knysh, Sergey ;
Korotkov, Alexander ;
Kostritsa, Fedor ;
Landhuis, David ;
Lindmark, Mike ;
Lucero, Erik ;
Lyakh, Dmitry ;
Mandra, Salvatore ;
McClean, Jarrod R. ;
McEwen, Matthew ;
Megrant, Anthony ;
Mi, Xiao .
NATURE, 2019, 574 (7779) :505-+
[2]   Quantum Simulation of the Ultrastrong-Coupling Dynamics in Circuit Quantum Electrodynamics [J].
Ballester, D. ;
Romero, G. ;
Garcia-Ripoll, J. J. ;
Deppe, F. ;
Solano, E. .
PHYSICAL REVIEW X, 2012, 2 (02)
[3]   Probing many-body dynamics on a 51-atom quantum simulator [J].
Bernien, Hannes ;
Schwartz, Sylvain ;
Keesling, Alexander ;
Levine, Harry ;
Omran, Ahmed ;
Pichler, Hannes ;
Choi, Soonwon ;
Zibrov, Alexander S. ;
Endres, Manuel ;
Greiner, Markus ;
Vuletic, Vladan ;
Lukin, Mikhail D. .
NATURE, 2017, 551 (7682) :579-+
[4]   Amplitude spectroscopy of a solid-state artificial atom [J].
Berns, David M. ;
Rudner, Mark S. ;
Valenzuela, Sergio O. ;
Berggren, Karl K. ;
Oliver, William D. ;
Levitov, Leonid S. ;
Orlando, Terry P. .
NATURE, 2008, 455 (7209) :51-U32
[5]   Cavity quantum electrodynamics for superconducting electrical circuits: An architecture for quantum computation [J].
Blais, A ;
Huang, RS ;
Wallraff, A ;
Girvin, SM ;
Schoelkopf, RJ .
PHYSICAL REVIEW A, 2004, 69 (06) :062320-1
[6]  
Child M., 1996, Molecular Collision Theory (Dover Books on Chemistry Series)
[7]   Multifrequency spin resonance in diamond [J].
Childress, Lilian ;
McIntyre, Jean .
PHYSICAL REVIEW A, 2010, 82 (03)
[8]   A quantum memory intrinsic to single nitrogen-vacancy centres in diamond [J].
Fuchs, G. D. ;
Burkard, G. ;
Klimov, P. V. ;
Awschalom, D. D. .
NATURE PHYSICS, 2011, 7 (10) :789-793
[9]   IBM Q Experience as a versatile experimental testbed for simulating open quantum systems [J].
Garcia-Perez, Guillermo ;
Rossi, Matteo A. C. ;
Maniscalco, Sabrina .
NPJ QUANTUM INFORMATION, 2020, 6 (01)
[10]   Landau-Zener-Stuckelberg Interferometry of a Single Electronic Spin in a Noisy Environment [J].
Huang, Pu ;
Zhou, Jingwei ;
Fang, Fang ;
Kong, Xi ;
Xu, Xiangkun ;
Ju, Chenyong ;
Du, Jiangfeng .
PHYSICAL REVIEW X, 2011, 1 (01)