Gate-Efficient Simulation of Molecular Eigenstates on a Quantum Computer

被引:119
作者
Ganzhorn, M. [1 ]
Egger, D. J. [1 ]
Barkoutsos, P. [1 ]
Ollitrault, P. [1 ]
Salis, G. [1 ]
Moll, N. [1 ]
Roth, M. [2 ,3 ]
Fuhrer, A. [1 ]
Mueller, P. [1 ]
Woerner, S. [1 ]
Tavernelli, I. [1 ]
Filipp, S. [1 ]
机构
[1] IBM Res Zurich, Saumerstr 4, CH-8803 Ruschlikon, Switzerland
[2] Forschungszentrum Julich, JARA Inst Quantum Informat PGI 11, D-52428 Julich, Germany
[3] Rhein Westfal TH Aachen, Inst Quantum Informat, D-52056 Aachen, Germany
关键词
We thank the quantum team at IBM T. J. Watson Research Center; Yorktown Heights; in particular; the fab team; Jerry Chow; David McKay; and William Shanks; for insightful discussions and the provision of qubit devices. We thank R. Heller and H. Steinauer for technical support. We thank S. Hoenl for designing a teaser image for this paper. This work was supported by the IARPA LogiQ program under Contract W911NF-16-1-0114-FE and the ARO under Contract W911NF-14-1-0124;
D O I
10.1103/PhysRevApplied.11.044092
中图分类号
O59 [应用物理学];
学科分类号
摘要
A key requirement to perform simulations of large quantum systems on near-term quantum hardware is the design of quantum algorithms with a short circuit depth that finish within the available coherence time. A way to stay within the limits of coherence is to reduce the number of gates by implementing a gate set that matches the requirements of the specific algorithm of interest directly in the hardware. Here, we show that exchange-type gates are a promising choice for simulating molecular eigenstates on near-term quantum devices since these gates preserve the number of excitations in the system. We report on the experimental implementation of a variational algorithm on a superconducting qubit platform to compute the eigenstate energies of molecular hydrogen. We utilize a parametrically driven tunable coupler to realize exchange-type gates that are configurable in amplitude and phase on two fixed-frequency superconducting qubits. With gate fidelities around 95%, we are able to compute the eigenstates to within an accuracy of 50 mHa (milliHartree) on average, a limit set by the coherence time of the tunable coupler.
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页数:7
相关论文
共 49 条
[1]  
Aleksandrowicz Gadi, 2019, METHOD PRODUCING HUM
[2]  
[Anonymous], 1970, Approximate Molecular Orbital Theory
[3]  
[Anonymous], 2012, Phys. Rev. A
[4]   Low-Depth Quantum Simulation of Materials [J].
Babbush, Ryan ;
Wiebe, Nathan ;
McClean, Jarrod ;
McClain, James ;
Neven, Hartmut ;
Chan, Garnet Kin-Lic .
PHYSICAL REVIEW X, 2018, 8 (01)
[5]   Adiabatic Quantum Simulation of Quantum Chemistry [J].
Babbush, Ryan ;
Love, Peter J. ;
Aspuru-Guzik, Alan .
SCIENTIFIC REPORTS, 2014, 4
[6]   ELEMENTARY GATES FOR QUANTUM COMPUTATION [J].
BARENCO, A ;
BENNETT, CH ;
CLEVE, R ;
DIVINCENZO, DP ;
MARGOLUS, N ;
SHOR, P ;
SLEATOR, T ;
SMOLIN, JA ;
WEINFURTER, H .
PHYSICAL REVIEW A, 1995, 52 (05) :3457-3467
[7]   Quantum algorithms for electronic structure calculations: Particle-hole Hamiltonian and optimized wave-function expansions [J].
Barkoutsos, Panagiotis Kl ;
Gonthier, Jerome F. ;
Sokolov, Igor ;
Moll, Nikolaj ;
Salis, Gian ;
Fuhrer, Andreas ;
Ganzhorn, Marc ;
Egger, Daniel J. ;
Troyer, Matthias ;
Mezzacapo, Antonio ;
Filipp, Stefan ;
Tavernelli, Ivano .
PHYSICAL REVIEW A, 2018, 98 (02)
[8]   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-+
[9]  
Bravyi S., ARXIV 1701 08213
[10]   Fermionic quantum computation [J].
Bravyi, SB ;
Kitaev, AY .
ANNALS OF PHYSICS, 2002, 298 (01) :210-226