Inertial geometric quantum logic gates

Fuente: arXiv
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Autori principali: Turyansky, Daniel, Ovdat, Oded, Dann, Roie, Aqua, Ziv, Kosloff, Ronnie, Dayan, Barak, Pick, Adi
Natura: Preprint
Pubblicazione: 2023
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author Turyansky, Daniel
Ovdat, Oded
Dann, Roie
Aqua, Ziv
Kosloff, Ronnie
Dayan, Barak
Pick, Adi
author_facet Turyansky, Daniel
Ovdat, Oded
Dann, Roie
Aqua, Ziv
Kosloff, Ronnie
Dayan, Barak
Pick, Adi
contents We present rapid and robust protocols for STIRAP and quantum logic gates. Our gates are based on geometric phases acquired by instantaneous eigenstates of a slowly accelerating inertial Hamiltonian. To begin, we establish the criteria for inertial evolution and subsequently engineer pulse shapes that fulfill these conditions. These tailored pulses are then used to optimize geometric logic gates. We analyze a realization of our protocols with $^{87}$Rb atoms, resulting in gate fidelity that approaches the current state-of-the-art, with marked improvements in robustness.
format Preprint
id arxiv_https___arxiv_org_abs_2303_13674
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Inertial geometric quantum logic gates
Turyansky, Daniel
Ovdat, Oded
Dann, Roie
Aqua, Ziv
Kosloff, Ronnie
Dayan, Barak
Pick, Adi
Quantum Physics
We present rapid and robust protocols for STIRAP and quantum logic gates. Our gates are based on geometric phases acquired by instantaneous eigenstates of a slowly accelerating inertial Hamiltonian. To begin, we establish the criteria for inertial evolution and subsequently engineer pulse shapes that fulfill these conditions. These tailored pulses are then used to optimize geometric logic gates. We analyze a realization of our protocols with $^{87}$Rb atoms, resulting in gate fidelity that approaches the current state-of-the-art, with marked improvements in robustness.
title Inertial geometric quantum logic gates
topic Quantum Physics
url https://arxiv.org/abs/2303.13674