Controlling spin relaxation with a cavity
arXiv:1508.06148 · doi:10.1038/nature16944
Abstract
Spontaneous emission of radiation is one of the fundamental mechanisms by which an excited quantum system returns to equilibrium. For spins, however, spontaneous emission is generally negligible compared to other non-radiative relaxation processes because of the weak coupling between the magnetic dipole and the electromagnetic field. In 1946, Purcell realized that the spontaneous emission rate can be strongly enhanced by placing the quantum system in a resonant cavity -an effect which has since been used extensively to control the lifetime of atoms and semiconducting heterostructures coupled to microwave or optical cavities, underpinning single-photon sources. Here we report the first application of these ideas to spins in solids. By coupling donor spins in silicon to a superconducting microwave cavity of high quality factor and small mode volume, we reach for the first time the regime where spontaneous emission constitutes the dominant spin relaxation mechanism. The relaxation rate is increased by three orders of magnitude when the spins are tuned to the cavity resonance, showing that energy relaxation can be engineered and controlled on-demand. Our results provide a novel and general way to initialise spin systems into their ground state, with applications in magnetic resonance and quantum information processing. They also demonstrate that, contrary to popular belief, the coupling between the magnetic dipole of a spin and the electromagnetic field can be enhanced up to the point where quantum fluctuations have a dramatic effect on the spin dynamics; as such our work represents an important step towards the coherent magnetic coupling of individual spins to microwave photons.
8 pages, 6 figures, 1 table
References in corpus (7)
- Quantum Computing
- High-fidelity projective readout of a solid-state spin quantum register
- High Kinetic Inductance Superconducting Nanowire Resonators for Circuit QED in a Magnetic Field
- Reaching the quantum limit of sensitivity in electron spin resonance
- High-gain weakly nonlinear flux-modulated Josephson parametric amplifier using a SQUID-array
- On the Horava-Lifshitz-like Gross-Neveu model
- Coupling of a locally implanted rare-earth ion ensemble to a superconducting micro-resonator
Cited by in corpus (91)
- Circuit Quantum Electrodynamics
- Quantum information processing with superconducting circuits: a review
- Hybrid quantum systems based on magnonics
- Atoms and Molecules in Cavities: From Weak to Strong Coupling in QED Chemistry
- A Coherent Spin-Photon Interface in Silicon
- Light-matter interactions with photonic quasiparticles
- Semiconductor Qubits In Practice
- Strong Coupling between Microwave Photons and Nanomagnet Magnons
- Superconductor-semiconductor hybrid cavity quantum electrodynamics
- Rapid high-fidelity gate-based spin read-out in silicon
- Coherent conversion between microwave and optical photons -- an overview of physical implementations
- Superradiant Hybrid Quantum Devices
- Electron Spin Resonance at the Level of 10000 Spins Using Low Impedance Superconducting Resonators
- Input-output theory for spin-photon coupling in Si double quantum dots
- Single electron-spin-resonance detection by microwave photon counting
- Inductive-detection electron-spin resonance spectroscopy with spins sensitivity
- Electrically Protected Valley-Orbit Qubits in Silicon
- Topical Review: optics of exciton-plasmon nanomaterials
- Donor spins in silicon for quantum technologies
- Magnetic resonance with squeezed microwaves
- Floquet maser
- Strong Purcell effect on a neutral atom trapped in an open fiber cavity
- Incorporation of erbium ions into thin-film lithium niobate integrated photonics
- Implementation of a transmon qubit using superconducting granular aluminum
- Solid-state electron spin lifetime limited by phononic vacuum modes
- Storing quantum information in spins and high-sensitivity ESR
- Spin detection with a micromechanical trampoline: Towards magnetic resonance microscopy harnessing cavity optomechanics
- Proposal for detection of a single electron spin in a microwave resonator
- Quantum-Enhanced Heat Engine Based on Superabsorption
- Realizing a Circuit Analog of an Optomechanical System with Longitudinally Coupled Superconducting Resonators
- Two-qubit logic between distant spins in silicon
- Linear hyperfine tuning of donor spins in silicon using hydrostatic strain
- Towards a spin-ensemble quantum memory for superconducting qubits
- Electron Spin Resonance spectroscopy with femtoliter detection volume
- Detecting Acceleration-Enhanced Vacuum Fluctuations with Atoms Inside a Cavity
- Strain-induced spin resonance shifts in silicon devices
- Tunable Nb superconducting resonators based upon a Ne-FIB-fabricated constriction nanoSQUID
- Magnetic Field Dependent Microwave Losses in Superconducting Niobium Microstrip Resonators
- Pulsed electron spin resonance spectroscopy in the Purcell regime
- Engineering Effective Hamiltonians
- Echo trains in pulsed electron spin resonance of a strongly coupled spin ensemble
- Multimode storage of quantum microwave fields in electron spins over 100 ms
- Electro-mechano-optical detection of nuclear magnetic resonance
- Electron paramagnetic resonance spectroscopy using a single artificial atom
- Roadmap on Nanoscale Magnetic Resonance Imaging
- Radiative cooling of a spin ensemble
- Cavity optimization for Unruh effect at small accelerations
- Identification of different types of high-frequency defects in superconducting qubits
- High-cooperativity coupling of a rare-earth spin ensemble to a superconducting resonator using yttrium orthosilicate as a substrate
- Multi-frequency Spin Manipulation Using Rapidly Tunable Superconducting Coplanar Waveguide Microresonators
- Dynamically enhancing qubit-photon interactions with anti-squeezing
- In-situ amplification of spin echoes within a kinetic inductance parametric amplifier
- Longitudinal coupling between a Si/SiGe quantum dot and an off-chip TiN resonator
- Real-time non-adiabatic dynamics in the one-dimensional Holstein model: Trajectory-based vs exact methods
- Coupling between Rydberg states and Landau levels of electrons trapped on liquid helium
- Spin resonance linewidths of bismuth donors in silicon coupled to planar microresonators
- Millisecond-lived circular Rydberg atoms in a room-temperature experiment
- Hyperfine spectroscopy in a quantum-limited spectrometer
- Towards hybrid circuit quantum electrodynamics with quantum dots
- Josephson parametric reflection amplifier with integrated directionality
- Experimental repetitive quantum channel simulation
- Driven-state relaxation of a coupled qubit-defect system in spin-locking measurements
- Optimal control of an inhomogeneous spin ensemble coupled to a cavity
- Quadrupolar Effects on Nuclear Spins of Neutral Arsenic Donors in Silicon
- Entanglement-enhanced sensing using a chain of qubits with always-on nearest-neighbor interactions
- Spin echo silencing using a current-biased frequency-tunable resonator
- Experimental protection of quantum coherence by using a phase-tunable image drive
- Probing Strong Coupling between a Microwave Cavity and a Spin Ensemble with Raman Heterodyne Spectroscopy
- Possible hundredfold enhancement in the direct magnetic coupling of a single atomic spin to a circuit resonator
- Zero field optical magnetic resonance study of phosphorus donors in 28-silicon
- Spin Environment of a Superconducting Qubit in High Magnetic Fields
- Projective measurement of energy on an ensemble of qubits with unknown frequencies
- Electron Plasmas Cooled by Cyclotron-Cavity Resonance
- Spatially-resolved decoherence of donor spins in silicon strained by a metallic electrode
- Addressing spin transitions on 209Bi donors in silicon using circularly-polarized microwaves
- Qubit guidelines for solid-state spin defects
- Purcell-enhanced spin-phonon coupling with a single color center
- Coherence properties of a spin in a squeezed resonator
- Temperature Damping of Magneto-Intersubband Resistance Oscillations in Magnetically Entangled Subbands
- Topological Casimir effect in a quantum LC circuit: real-time dynamics
- Millikelvin Nb nanoSQUID-embedded tuneable resonator fabricated with a neon focused-ion-beam
- Sustaining Rabi oscillations by using a phase-tunable image drive
- Coherence protection in coupled quantum systems
- Generalized Collective Lamb Shift
- Localization to delocalization transition in a driven nonlinear cavity array
- Tunable superconducting two-chip lumped element resonator
- Kinetic inductance coupling for circuit QED with spins
- Time-Convolutionless Master Equation Applied to Adiabatic Elimination
- Polarizing electron spins with a superconducting flux qubit
- Detecting spins with a microwave photon counter
- Stabilization of Granovskii-Zhedanov scars of the XYZ quantum spin chain via non-Hermitian spin relaxation