Fast gate-based reflectometry readout of Pauli spin blockade and tunable interdot coupling demonstrated in industry-fabricated silicon double quantum dots.
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cond-mat.mes-hall 2representative citing papers
The work shows a gate-tunable interference effect in a voltage-biased triple quantum dot system that produces a minimum in charge current coinciding with a maximum in energy transfer to a capacitively coupled damped resonator representing a vibrational mode.
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Fast readout for large scale spin-based qubits
Fast gate-based reflectometry readout of Pauli spin blockade and tunable interdot coupling demonstrated in industry-fabricated silicon double quantum dots.
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Simulating electron-vibron energy transfer with quantum dots and resonators
The work shows a gate-tunable interference effect in a voltage-biased triple quantum dot system that produces a minimum in charge current coinciding with a maximum in energy transfer to a capacitively coupled damped resonator representing a vibrational mode.