Superconducting flux qubit with ferromagnetic Josephson $π$-junction operating at zero magnetic field

Fuente: arXiv
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Main Authors: Kim, Sunmi, Abdurakhimov, Leonid V., Pham, Duong, Qiu, Wei, Terai, Hirotaka, Ashhab, Sahel, Saito, Shiro, Yamashita, Taro, Semba, Kouichi
Format: Preprint
Published: 2024
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author Kim, Sunmi
Abdurakhimov, Leonid V.
Pham, Duong
Qiu, Wei
Terai, Hirotaka
Ashhab, Sahel
Saito, Shiro
Yamashita, Taro
Semba, Kouichi
author_facet Kim, Sunmi
Abdurakhimov, Leonid V.
Pham, Duong
Qiu, Wei
Terai, Hirotaka
Ashhab, Sahel
Saito, Shiro
Yamashita, Taro
Semba, Kouichi
contents Conventional superconducting flux qubits require the application of a precisely tuned magnetic field to set the operation point at half a flux quantum through the qubit loop, which complicates the on-chip integration of this type of device. It has been proposed that by inducing a $π$-phase shift in the superconducting order parameter using a precisely controlled nanoscale-thickness superconductor/ferromagnet/superconductor Josephson junction, commonly referred to as $π$-junction, it is possible to realize a flux qubit operating at zero magnetic flux. Here, we report the realization of a zero-flux-biased flux qubit based on three NbN/AlN/NbN Josephson junctions and a NbN/PdNi/NbN ferromagnetic $π$-junction. The qubit lifetime is in the microsecond range, which we argue is limited by quasiparticle excitations in the metallic ferromagnet layer. Our results pave the way for developing quantum coherent devices, including qubits and sensors, that utilize the interplay between ferromagnetism and superconductivity.
format Preprint
id arxiv_https___arxiv_org_abs_2401_14597
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Superconducting flux qubit with ferromagnetic Josephson $π$-junction operating at zero magnetic field
Kim, Sunmi
Abdurakhimov, Leonid V.
Pham, Duong
Qiu, Wei
Terai, Hirotaka
Ashhab, Sahel
Saito, Shiro
Yamashita, Taro
Semba, Kouichi
Superconductivity
Quantum Physics
Conventional superconducting flux qubits require the application of a precisely tuned magnetic field to set the operation point at half a flux quantum through the qubit loop, which complicates the on-chip integration of this type of device. It has been proposed that by inducing a $π$-phase shift in the superconducting order parameter using a precisely controlled nanoscale-thickness superconductor/ferromagnet/superconductor Josephson junction, commonly referred to as $π$-junction, it is possible to realize a flux qubit operating at zero magnetic flux. Here, we report the realization of a zero-flux-biased flux qubit based on three NbN/AlN/NbN Josephson junctions and a NbN/PdNi/NbN ferromagnetic $π$-junction. The qubit lifetime is in the microsecond range, which we argue is limited by quasiparticle excitations in the metallic ferromagnet layer. Our results pave the way for developing quantum coherent devices, including qubits and sensors, that utilize the interplay between ferromagnetism and superconductivity.
title Superconducting flux qubit with ferromagnetic Josephson $π$-junction operating at zero magnetic field
topic Superconductivity
Quantum Physics
url https://arxiv.org/abs/2401.14597