High Resolution Valley Spectroscopy of Si Quantum Dots
arXiv:1704.06312 · doi:10.1103/PhysRevLett.119.176803
Abstract
We study an accumulation mode Si/SiGe double quantum dot (DQD) containing a single electron that is dipole coupled to microwave photons in a superconducting cavity. Measurements of the cavity transmission reveal dispersive features due to the DQD valley states in Si. The occupation of the valley states can be increased by raising temperature or applying a finite source-drain bias across the DQD, resulting in an increased signal. Using cavity input-output theory and a four-level model of the DQD, it is possible to efficiently extract valley splittings and the inter- and intra-valley tunnel couplings.
References in corpus (11)
- Single-shot read-out of an individual electron spin in a quantum dot
- An addressable quantum dot qubit with fault-tolerant control fidelity
- Circuit Quantum Electrodynamics with a Spin Qubit
- Electrometry Using Coherent Exchange Oscillations in a Singlet-Triplet-Qubit
- Strong Coupling of a Single Electron in Silicon to a Microwave Photon
- Scalable gate architecture for densely packed semiconductor spin qubits
- A Reconfigurable Gate Architecture for Si/SiGe Quantum Dots
- Measurement of valley splitting in high-symmetry Si/SiGe quantum dots
- Circuit Quantum Electrodynamics Architecture for Gate-Defined Quantum Dots in Silicon
- A Radio Frequency Charge Parity Meter
- Dispersive readout of valley splittings in cavity-coupled silicon quantum dots
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- Origin of giant valley splitting in silicon quantum wells induced by superlattice barriers
- Coupling conduction-band valleys in SiGe heterostructures via shear strain and Ge concentration oscillations
- Measurement of tunnel coupling in a Si double quantum dot based on charge sensing
- Valley-Free Silicon Fins Caused by Shear Strain
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- Theory of valley-resolved spectroscopy of a Si triple quantum dot coupled to a microwave resonator
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- Valley Splitting Correlations Across a Silicon Quantum Well Containing Germanium
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- Fast spin-valley-based quantum gates in Si with micromagnets
- Towards Utilizing Scanning Gate Microscopy as a High-Resolution Probe of Valley Splitting in Si/SiGe Heterostructures
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