Directional amplification with a Josephson circuit
arXiv:1302.4663 · doi:10.1103/PhysRevX.3.031001
Abstract
Non-reciprocal devices, which have different transmission coefficients for propagating waves in opposite directions, are crucial components in many low noise quantum measurements. In most schemes, magneto-optical effects provide the necessary non-reciprocity. In contrast, the proof-of-principle device presented here, consists of two on-chip coupled Josephson parametric converters (JPCs), which achieves directionality by exploiting the non-reciprocal phase response of the JPC in the trans-gain mode. The non-reciprocity of the device is controlled in-situ by varying the amplitude and phase difference of two independent microwave pump tones feeding the system. At the desired working point and for a signal frequency of 8.453 GHz, the device achieves a forward power gain of 15 dB within a dynamical bandwidth of 9 MHz, a reverse gain of -6 dB and suppression of the reflected signal by 8 dB. We also find that the amplifier adds a noise equivalent to less than one and a half photons at the signal frequency (referred to the input). It can process up to 3 photons at the signal frequency per inverse dynamical bandwidth. With a directional amplifier operating along the principles of this device, qubit and readout preamplifier could be integrated on the same chip.
7 pages, 5 figures
References in corpus (12)
- Amplification and squeezing of quantum noise with a tunable Josephson metamaterial
- Quantum feedback control of a superconducting qubit: Persistent Rabi oscillations
- Observation of quantum jumps in a superconducting artificial atom
- A widely tunable parametric amplifier based on a SQUID array resonator
- Quantum back-action of variable-strength measurement
- Noiseless nonreciprocity in a parametric active device
- Widely tunable, non-degenerate three-wave mixing microwave device operating near the quantum limit
- Non-degenerate, three-wave mixing with the Josephson ring modulator
- Full coherent frequency conversion between two microwave propagating modes
- Superconducting Low-Inductance Undulatory Galvanometer Microwave Amplifier
- Input Impedance and Gain of a Gigahertz Amplifier Using a DC SQUID in a Quarter Wave Resonator
- Gain, directionality and noise in microwave SQUID amplifiers: Input-output approach
Cited by in corpus (62)
- Nonreciprocal Photon Transmission and Amplification via Reservoir Engineering
- Nonreciprocal microwave signal processing with a Field-Programmable Josephson Amplifier
- Quantum-limited directional amplifiers with optomechanics
- Nonreciprocal Phonon Laser
- Quantum limited amplification and entanglement in coupled nonlinear resonators
- Quantum--Classical Interface Based on Single Flux Quantum Digital Logic
- Optimizing the nonlinearity and dissipation of a SNAIL Parametric Amplifier for dynamic range
- Demonstration of efficient nonreciprocity in a microwave optomechanical circuit
- Microwaves in Quantum Computing
- Simple formulas of directional amplification from non-Bloch band theory
- Nonreciprocal Quantum Batteries
- Fast charge sensing of a cavity-coupled double quantum dot using a Josephson parametric amplifier
- On-Chip Microwave Quantum Hall Circulator
- Josephson directional amplifier for quantum measurement of superconducting circuits
- Topological Amplification in Photonic Lattices
- Realization of directional amplification in a microwave optomechanical device
- Hall Effect Gyrators and Circulators
- Manipulating the flow of thermal noise in quantum devices
- Non-reciprocal quantum interactions and devices via autonomous feed-forward
- Fundamental limits for reciprocal and non-reciprocal non-Hermitian quantum sensing
- Nonreciprocal metamaterial obeying time-reversal symmetry
- Nonreciprocal transport based on cavity Floquet modes in optomechanics
- Understanding the saturation power of Josephson Parametric Amplifiers made from SQUIDs arrays
- Non-degenerate parametric amplifiers based on dispersion engineered Josephson junction arrays
- Strong nonreciprocity in modulated resonator chains through synthetic electric and magnetic fields
- Topological input-output theory for directional amplification
- Direction-Dependent Parity-Time Phase Transition and Non-Reciprocal Directional Amplification with Dynamic Gain-Loss Modulation
- Minimal models for nonreciprocal amplification using biharmonic drives
- Introduction to quantum non-reciprocal interactions: from non-Hermitian Hamiltonians to quantum master equations and quantum feedforward schemes
- Nonreciprocal Charge and Spin Transport Induced by Non-Hermitian Skin Effect in Mesoscopic Heterojunctions
- Dynamic skin effects in non-Hermitian systems
- Gyrator operation using Josephson mixers
- Double-Fourier engineering of Josephson energy-phase relationships applied to diodes
- Hamiltonian Extrema of an Arbitrary Flux-Biased Josephson Circuit
- Frequency Combs in a Lumped-Element Josephson-Junction Circuit
- Topological zero modes and edge symmetries of metastable Markovian bosonic systems
- Microwave measurement beyond the quantum limit with a nonreciprocal amplifier
- Non-reciprocal Optical Mirrors Based on Spatio-Temporal Modulation
- Realization of the unidirectional amplification in a cavity magnonic system
- Exact formulas of the end-to-end Green's functions in non-Hermitian systems
- Josephson parametric reflection amplifier with integrated directionality
- Optimizing single microwave-photon detection: Input-Output theory
- A compact design for the Josephson mixer: the lumped element circuit
- Exponentially Enhanced non-Hermitian Cooling
- Nonreciprocal Amplification Transition in a Driven-Dissipative Quantum Network
- Optomechanically induced transparency and directional amplification in a non-Hermitian optomechanical lattice
- The hybrid Josephson rhombus: A superconducting element with tailored current-phase relation
- Lecture Notes on Quantum Electrical Circuits
- Voltage-controlled synthesis of higher harmonics in hybrid Josephson junction circuits
- Time-multiplexed amplification in a hybrid-less and coil-less Josephson parametric converter
- Magnetic-free traveling-wave nonreciprocal superconducting microwave components
- Giant-cavity-based quantum sensors with enhanced performance
- Broadband Sample Holder for Microwave Spectroscopy of Superconducting Qubits
- Reverse isolation and backaction of the SLUG microwave amplifier
- Circulation by microwave-induced vortex transport for signal isolation
- Nonreciprocity in microwave optomechanical circuits
- Diamond Configuration for Non-reciprocal Transmission
- Automated Discovery of Coupled Mode Setups
- Topological Amplification of the Bosonic Kitaev Chain with Non-Uniform Loss
- Non-reciprocal scattering in a microwave frequency comb
- Correspondence between non-Hermitian topology and directional amplification in the presence of disorder
- Beyond characteristic equations: A unified one-dimensional non-Bloch band theory via wavefunction data