In-situ Tuning of the Electric Dipole Strength of a Double Dot Charge Qubit: Charge Noise Protection and Ultra Strong Coupling
arXiv:2104.03045 · doi:10.1103/PhysRevX.12.031004
Abstract
Semiconductor quantum dots, where electrons or holes are isolated via electrostatic potentials generated by surface gates, are promising building blocks for semiconductor-based quantum technology. Here, we investigate double quantum dot (DQD) charge qubits in GaAs, capacitively coupled to high-impedance SQUID array and Josephson junction array resonators. We tune the strength of the electric dipole interaction between the qubit and the resonator in-situ using surface gates. We characterize the qubit-resonator coupling strength, qubit decoherence, and detuning noise affecting the charge qubit for different electrostatic DQD configurations. We find that all quantities can be tuned systematically over more than one order of magnitude, resulting in reproducible decoherence rates MHz in the limit of high interdot capacitance. Conversely, by reducing the interdot capacitance, we can increase the DQD electric dipole strength, and therefore its coupling to the resonator. By employing a Josephson junction array resonator with an impedance of k and a resonance frequency of GHz, we observe a coupling strength of MHz, demonstrating the possibility to achieve the ultrastrong coupling regime (USC) for electrons hosted in a semiconductor DQD. These results are essential for further increasing the coherence of quantum dot based qubits and investigating USC physics in semiconducting QDs.
24 pages, 13 figures
References in corpus (15)
- Beyond the Jaynes-Cummings model: circuit QED in the ultrastrong coupling regime
- AC-Stark Shift and Dephasing of a Superconducting Qubit Strongly Coupled to a Cavity Field
- Circuit Quantum Electrodynamics with a Spin Qubit
- The germanium quantum information route
- Electrometry Using Coherent Exchange Oscillations in a Singlet-Triplet-Qubit
- Strong Coupling of a Single Electron in Silicon to a Microwave Photon
- Implementation of low-loss superinductances for quantum circuits
- Strong Coupling Cavity QED with Gate-Defined Double Quantum Dots Enabled by a High Impedance Resonator
- Ultrafast Hole Spin Qubit with Gate-Tunable Spin-Orbit Switch
- Circuit Quantum Electrodynamics Architecture for Gate-Defined Quantum Dots in Silicon
- Large dispersive interaction between a CMOS double quantum dot and microwave photons
- Rapid detection of coherent tunneling in an InAs nanowire quantum dot through dispersive gate sensing
- Nonreciprocal Atomic Scattering: A saturable, quantum Yagi-Uda antenna
- On-chip microwave filters for high-impedance resonators with gate-defined quantum dots
- Hybrid superconductor-semiconductor systems for quantum technology
Cited by in corpus (29)
- Tunable hole spin-photon interaction based on g-matrix modulation
- Braiding-based quantum control of a Majorana qubit built from quantum dots
- Detecting virtual photons in ultrastrongly coupled superconducting quantum circuits
- Probing two driven double quantum dots strongly coupled to a cavity
- Energetics of microwaves probed by double quantum dot absorption
- Rabi and Ramsey oscillations of a Majorana qubit in a quantum dot-superconductor array
- Coherent interaction of a-few-electron quantum dot with a terahertz optical resonator
- Coupling of hole double quantum dot in planar germanium to a microwave cavity
- High Impedance Josephson Junction Resonators in the Transmission Line Geometry
- Quantum phase transitions and cat states in cavity-coupled quantum dots
- Continuous microwave photon counting by semiconductor-superconductor hybrids
- Unifying Floquet theory of longitudinal and dispersive readout
- Charge-sensing of a Ge/Si core/shell nanowire double quantum dot using a high-impedance superconducting resonator
- Dephasing in a crystal-phase defined double quantum dot charge qubit strongly coupled to a high-impedance resonator
- Photon counting statistics in Gaussian bosonic networks
- Generalized fast quasi-adiabatic population transfer for improved qubit readout, shuttling, and noise mitigation
- Coherence of an Electronic Two-Level System under Continuous Charge Sensing by a Quantum Dot Detector
- Beyond-adiabatic Quantum Admittance of a Semiconductor Quantum Dot at High Frequencies: Rethinking Reflectometry as Polaron Dynamics
- Braiding Majoranas in a linear quantum dot-superconductor array: Mitigating the errors from Coulomb repulsion and residual tunneling
- Entangled Photon-Pair Emission in Waveguide Circuit QED from a Cooper Pair Splitter
- High-impedance surface acoustic wave resonators
- Dynamical charge susceptibility in nonequilibrium double quantum dots
- Resonator-mediated quantum gate between distant charge qubits
- Spin-phase transition in an array of quantum rings controlled by cavity photons
- Engineering artificial atomic systems of giant electric dipole moment
- Hydrogen crystals reduce dissipation in superconducting resonators
- Dispersive detection of single microwave photons with quantum dots
- Electrically driven spin resonance with bichromatic driving
- Synchronizing microwave cQED limit-cycle oscillators