Two-tone spectroscopy of high-frequency quantum circuits with a Josephson emitter
arXiv:2406.08066 · doi:10.1103/PhysRevApplied.22.064027
Abstract
We perform two-tone spectroscopy on quantum circuits, where high-frequency radiation is generated by a voltage-biased superconductor-normal-superconductor Josephson junction and detection is carried out by an ancillary microwave resonator. We implement this protocol on two different systems, a transmon qubit and a resonator. We demonstrate that this two-tone Josephson spectroscopy operates well into the millimeter-wave band, reaching frequencies larger than 80 GHz, and is well-suited for probing highly coherent quantum systems.
References in corpus (39)
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Circuit Quantum Electrodynamics: Coherent Coupling of a Single Photon to a Cooper Pair Box
- Charge insensitive qubit design derived from the Cooper pair box
- Cavity quantum electrodynamics for superconducting electrical circuits: an architecture for quantum computation
- Electric field tunable unconventional superconductivity in alternating twist magic-angle trilayer graphene
- Electrically Tunable Low Density Superconductivity in a Monolayer Topological Insulator
- Revealing the electronic structure of a carbon nanotube carrying a supercurrent
- Exciting Andreev pairs in a superconducting atomic contact
- Fabrication Process and Properties of Fully-Planarized Deep-Submicron Nb/Al-AlOx/Nb Josephson Junctions for VLSI Circuits
- Josephson radiation from gapless Andreev bound states in HgTe-based topological junctions
- The Bright Side of Coulomb Blockade
- Microwave spectroscopy of spinful Andreev bound states in ballistic semiconductor Josephson junctions
- Demonstration of an ac Josephson junction laser
- Emission and Absorption quantum noise measurement with an on-chip resonant circuit
- Supercurrent Spectroscopy of Andreev States
- Microwave Package Design for Superconducting Quantum Processors
- Weyl Josephson Circuits
- Antibunched photons emitted by a dc biased Josephson junction
- Antibunched photons from inelastic Cooper-pair tunneling
- Quantum limited amplification from inelastic Cooper pair tunneling
- Generating two continuous entangled microwave beams using a dc-biased Josephson junction
- From adiabatic to dispersive readout of quantum circuits
- Fock-state stabilization and emission in superconducting circuits using dc-biased Josephson junctions
- Transconductance quantization in a topological Josephson tunnel junction circuit
- Emission of photon multiplets by a dc-biased superconducting circuit
- Multiplying and detecting propagating microwave photons using inelastic Cooper-pair tunneling
- Non-degenerate parametric resonance in tunable superconducting cavity
- Very high frequency spectroscopy and tuning of a single-Cooper-pair-transistor with an on-chip generator
- Nondegenerate parametric oscillations in a tunable superconducting resonator
- Injection locking and parametric locking in a superconducting circuit
- Coherence-enhanced, phase-dependent dissipation in long SNS Josephson junctions: revealing Andreev Bound States dynamics
- Injection locking and synchronization in Josephson photonics devices
- Nonadiabatic Dynamics of Strongly Driven Diffusive Josephson Junctions
- Measuring the quantum states of a mesoscopic SQUID using a small Josephson junction
- Tunneling of Cooper pairs across voltage biased asymmetric single-Cooper-pair transistors
- Microwave photon-number amplification
- Inelastic scattering of microwave radiation in the dynamical Coulomb blockade
- Spectral Signatures of Non-Trivial Topology in a Superconducting Circuit
- A self-aligned nano-fabrication process for vertical NbN-MgO-NbN Josephson junctions
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- DC-operated Josephson junction arrays as a cryogenic on-chip microwave measurement platform
- Tunable Josephson voltage source for quantum circuits