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  4. Fidelity Witnesses for Fermionic Quantum Simulations
 
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Fidelity Witnesses for Fermionic Quantum Simulations

Publikationstyp
Journal Article
Date Issued
2018-05-11
Sprache
English
Author(s)
Gluza, M.  
Kliesch, Martin  
Eisert, Jens  
Aolita, Leandro  
TORE-URI
http://hdl.handle.net/11420/14089
Journal
Physical review letters  
Volume
120
Issue
19
Article Number
190501
Citation
Physical Review Letters 120 (19): 190501 (2018-05-11)
Publisher DOI
10.1103/PhysRevLett.120.190501
Scopus ID
2-s2.0-85047403548
PubMed ID
29799258
The experimental interest and developments in quantum spin-1/2 chains has increased uninterruptedly over the past decade. In many instances, the target quantum simulation belongs to the broader class of noninteracting fermionic models, constituting an important benchmark. In spite of this class being analytically efficiently tractable, no direct certification tool has yet been reported for it. In fact, in experiments, certification has almost exclusively relied on notions of quantum state tomography scaling very unfavorably with the system size. Here, we develop experimentally friendly fidelity witnesses for all pure fermionic Gaussian target states. Their expectation value yields a tight lower bound to the fidelity and can be measured efficiently. We derive witnesses in full generality in the Majorana-fermion representation and apply them to experimentally relevant spin-1/2 chains. Among others, we show how to efficiently certify strongly out-of-equilibrium dynamics in critical Ising chains. At the heart of the measurement scheme is a variant of importance sampling specially tailored to overlaps between covariance matrices. The method is shown to be robust against finite experimental-state infidelities.
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