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Flux-Tunable Regimes and Supersymmetry in Twisted Cuprate Heterostructures

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arxiv 2405.03454 v1 pith:DJEU2YKU submitted 2024-05-06 cond-mat.supr-con cond-mat.mes-hallquant-ph

Flux-Tunable Regimes and Supersymmetry in Twisted Cuprate Heterostructures

classification cond-mat.supr-con cond-mat.mes-hallquant-ph
keywords fluxmagneticprotectedqubittwistedcircuitexternalflowermon
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Van der Waals assembly allows for the creation of Josephson junctions in an atomically sharp interface between two exfoliated Bi$_2$Sr$_2$CaCu$_2$O$_{8+\delta}$ (Bi-2212) flakes that are twisted relative to each other. In a narrow range of angles close to $45^\circ$, the junction exhibits a regime where time-reversal symmetry can be spontaneously broken and it can be used to encode an inherently protected qubit called flowermon. In this work we investigate the physics emerging when two such junctions are integrated in a SQuID circuit threaded by a magnetic flux. We show that the flowermon qubit regime is maintained up to a finite critical value of the magnetic field and, under appropriate conditions, it is protected against both charge and flux noise. For larger external fluxes, the interplay between the inherent twisted d-wave nature of the order parameter and the external magnetic flux enables the implementation of different artificial atoms, including a flux-biased protected qubit and a supersymmetric quantum circuit.

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  1. Quantum interference in a twisted high-Tc SQUID senses emergent interfacial order

    cond-mat.supr-con 2026-03 conditional novelty 7.0

    Quantum interference in a twisted cuprate SQUID reveals a π phase difference between its two arms — a signature the authors attribute to chiral interfacial superconductivity — and delivers roughly 1.5 μΦ0/√Hz flux noi...