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Supercurrent Spectroscopy of Andreev States
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Supercurrent Spectroscopy of Andreev States
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We measure the excitation spectrum of a superconducting atomic contact. In addition to the usual continuum above the superconducting gap, the single particle excitation spectrum contains discrete, spin-degenerate Andreev levels inside the gap. Quasiparticle excitations are induced by a broadband on-chip microwave source and detected by measuring changes in the supercurrent flowing through the atomic contact. Since microwave photons excite quasiparticles in pairs, two types of transitions are observed: Andreev transitions, which consists of putting two quasiparticles in an Andreev level, and transitions to odd states with a single quasiparticle in an Andreev level and the other one in the continuum. In contrast to absorption spectroscopy, supercurrent spectroscopy allows detection of long-lived odd states.
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Cited by 1 Pith paper
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Fermion parity of an Andreev molecule probed by nonlocal Josephson effect
In a carbon nanotube Andreev molecule, the phase of the nonlocal Josephson current flips by π when the global fermion parity of the molecular ground state changes.
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