Isotope sensitive measurement of the hole-nuclear spin interaction in quantum dots
arXiv:1109.0733 · doi:10.1038/nphys2514
Abstract
Decoherence caused by nuclear field fluctuations is a fundamental obstacle to the realization of quantum information processing using single electron spins. Alternative proposals have been made to use spin qubits based on valence band holes having weaker hyperfine coupling. However, it was demonstrated recently both theoretically and experimentally that the hole hyperfine interaction is not negligible, although a consistent picture of the mechanism controlling the magnitude of the hole-nuclear coupling is still lacking. Here we address this problem by performing isotope selective measurement of the valence band hyperfine coupling in InGaAs/GaAs, InP/GaInP and GaAs/AlGaAs quantum dots. Contrary to existing models we find that the hole hyperfine constant along the growth direction of the structure (normalized by the electron hyperfine constant) has opposite signs for different isotopes and ranges from -15% to +15%. We attribute such changes in hole hyperfine constants to the competing positive contributions of p-symmetry atomic orbitals and the negative contributions of d-orbitals. Furthermore, we find that the d-symmetry contribution leads to a new mechanism for hole-nuclear spin flips which may play an important role in hole spin decoherence. In addition the measured hyperfine constants enable a fundamentally new approach for verification of the computed Bloch wavefunctions in the vicinity of nuclei in semiconductor nanostructures.
References in corpus (10)
- Spin decoherence of a heavy hole coupled to nuclear spins in a quantum dot
- Coherent control and suppressed nuclear feedback of a single quantum dot hole qubit
- Observation of extremely slow hole spin relaxation in self-assembled quantum dots
- Hole - Nuclear Spin Interaction in Quantum Dots
- Optical control of one and two hole spins in interacting quantum dots
- Direct measurement of the hole-nuclear spin interaction in single quantum dots
- High resolution nuclear magnetic resonance spectroscopy of highly-strained quantum dot nanostructures
- Hyperfine interaction dominated dynamics of nuclear spins in self-assembled quantum dots
- Full coherent control of nuclear spins in an optically pumped single quantum dot
- Alignment of nuclear spins in single quantum dots using unpolarized light
Cited by in corpus (53)
- Strain-Tunable GaAs Quantum dot: A Nearly Dephasing-Free Source of Entangled Photon Pairs on Demand
- Coherent spin dynamics of electrons and holes in CsPbBr perovskite crystals
- Quantum many-body theory for electron spin decoherence in nanoscale nuclear spin baths
- Semiconductor quantum dots as an ideal source of polarization entangled photon pairs on-demand: a review
- Quadrupolar induced suppression of nuclear spin bath fluctuations in self-assembled quantum dots
- Recent advances in hole-spin qubits
- Coherent Spin Precession and Lifetime-Limited Spin Dephasing in CsPbBr3 Perovskite Nanocrystals
- Charge-insensitive single-atom spin-orbit qubit in silicon
- Nuclear magnetization in gallium arsenide quantum dots at zero magnetic field
- First-principles hyperfine tensors for electrons and holes in GaAs and silicon
- Interplay of Electron and Nuclear Spin Noise in GaAs
- Spin noise of electrons and holes in (In,Ga)As quantum dots: experiment and theory
- Hyperfine interactions in two-dimensional HgTe topological insulators
- Quantum Computing with Acceptor Spins in Silicon
- Depolarization of Electronic Spin Qubits Confined in Semiconductor Quantum Dots
- Theory of spin inertia in singly-charged quantum dots
- Strong Hyperfine-Induced Modulation of an Optically-Driven Hole Spin in an InAs Quantum Dot
- Quantum model for mode locking in pulsed semiconductor quantum dots
- Nuclear magnetic resonance and nuclear spin relaxation in AlAs quantum well probed by ESR
- Electron and nuclear spin properties of the nanohole-filled GaAs/AlGaAs quantum dots
- Hyperfine coupling and spin polarization in the bulk of the topological insulator BiSe
- Counting statistics of hole transfer in a p-type GaAs quantum dot with dense excitation spectrum
- Dynamic nuclear polarization in InGaAs/GaAs and GaAs/AlGaAs quantum dots under non-resonant ultra-low power optical excitation
- Dominant role of the shear strain induced admixture in spin-flip processes in self-assembled quantum dots
- Hyperfine interaction for holes in quantum dots: k.p model
- Cross-calibration of GaAs deformation potentials and gradient-elastic tensors using photoluminescence and nuclear magnetic resonance spectroscopy in GaAs/AlGaAs quantum dot structures
- Hyperfine coupling of hole and nuclear spins in symmetric GaAs quantum dots
- Nuclear Spin Noise in the Central Spin Model
- Voltage control of electron-nuclear spin correlation time in a single quantum dot
- Dynamic polarization of electron spins in indirect band gap (In,Al)As/AlAs quantum dots in weak magnetic field: experiment and theory
- Dynamics of nuclear spin polarization induced and detected by coherently precessing electron spins in fluorine-doped ZnSe
- Interface effects on acceptor qubits in silicon and germanium
- Optical spin control and coherence properties of acceptor bound holes in strained GaAs
- Hole Spin Pumping and Re-pumping in a p-type δ-doped InAs Quantum Dot
- Hole-Spin-Echo Envelope Modulations
- Maximizing the purity of a qubit evolving in an anisotropic environment
- Acceptor-based qubit in silicon with tunable strain
- Driven dynamics of a quantum dot electron spin coupled to bath of higher-spin nuclei
- Probing details of spin--orbit coupling through Pauli spin blockade
- Quantum non-demolition measurement of an electron spin qubit through its low-energy many-body spin environment
- Interlayer Diffusion of Nuclear Spin Polarization in Quantum Hall States
- Phonon-assisted carrier tunneling in coupled quantum dot systems with hyperfine-induced spin flip
- Electrically tunable dynamic nuclear spin polarization in GaAs quantum dots at zero magnetic field
- Dynamical polarization of nuclear spins by acceptor-bound holes in a zinc blende semiconductor
- MOVPE growth, transmission electron microscopy and magneto-optical spectroscopy of individual InAsP/GaInP quantum dots
- Passive stabilization of hole spin qubit using optical Stark effect
- Photodriven germanium hole qubit
- Slowly generated anomalously large nuclear field in bulk n-AlGaAs
- Role of anisotropic confining potential and elliptical driving in dynamics of a Ge hole qubit
- Exchange interaction-driven dynamic nuclear polarization in Mn-doped InGaAs/GaAs quantum dots
- Single-shot measurement of transient nuclear magnetization with spin-noise spectroscopy in n-GaAs microcavities
- Quantifying electron-nuclear spin entanglement dynamics in central-spin systems using one-tangles
- Hyperfine interaction in atomically thin transition metal dichalcogenides