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Coupling-assisted Landau-Majorana-Stückelberg-Zener transition in a system of two interacting spin qubits

2018/12/31 by Roberto Grimaudo, R. Grimaudo, Nikolay V. Vitanov +2 · 1 citation
Computer Science · Physics and Astronomy · #Condensed matter physics #Coupling (piping) #Dephasing #MAJORANA #Materials science #Physics #Quantum #Quantum Information and Cryptography #Quantum and electron transport phenomena #Quantum entanglement #Quantum mechanics #Quantum optics and atomic interactions #Qubit #Spin (aerodynamics) #Superconducting quantum computing #Superconductivity #Zener diode #quant-ph

paper · pdf · doi:10.1103/physrevb.99.174416

published as Phys. Rev. B 99, 174416 (2019)

openalex publication_date 2019/05/17 · arxiv created 2019/05/20 · arxiv updated 2019/05/22 · openalex created_date 2020/01/23 · openalex updated_date 2026/08/05

Abstract

We analyze a system of two interacting spin-qubits subjected to a Landau-Majorana-St"uckelberg-Zener (LMSZ) ramp. We prove that LMSZ transitions of the two spin qubits are possible without an external transverse static field since its role is played by the coupling between the spin qubits. We show how such a physical effect could be exploited to estimate the strength of the interaction between the two spin qubits and to generate entangled states of the system by appropriately setting the slope of the ramp. Moreover, the study of effects of the coupling parameters on the time behavior of the entanglement is reported. Finally, our symmetry-based approach allows us to discuss also effects stemming from the presence of a classical noise or non-Hermitian dephasing terms.

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