Coherent manipulation of the Si/SiGe quantum dot hybrid qubit using single-shot latched readout
ORAL
Abstract
We present single-shot measurements and demonstrate coherent Larmor oscillations of a quantum dot hybrid qubit. Single-shot readout is performed through a single reservoir coupled to a 5-electron double dot in the (4,1)-(3,2) charge configuration. Latching onto the (4,2) charge state is achieved by simultaneously pulsing the gate voltages on barrier and plunger gates, thereby enabling dynamic control of the tunnel rates. We further show that similar pulses on the same gates can speed up qubit initialization by a factor of 15, greatly increasing experimental throughput. We demonstrate that crosstalk between the barrier gates and the quantum dots is only significant for adjacent dots, so that a simple correction scheme is sufficient to fully cancel out the crosstalk. Finally, we discuss the application of our latching scheme to any qubit whose spin states can be adiabatically transformed to charge states of a double quantum dot, including singlet-triplet qubits, exchange-only qubits, and single-spin qubits in parity readout mode.
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Presenters
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Sanghyeok Park
University of Wisconsin - Madison
Authors
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Sanghyeok Park
University of Wisconsin - Madison
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Jared Benson
University of Wisconsin - Madison
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Joelle J Corrigan
University of Wisconsin - Madison (present affiliation: Intel Corporation), University of Wisconsin - Madison
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John P Dodson
University of Wisconsin - Madison
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Sue N Coppersmith
University of New South Wales
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Mark Friesen
University of Wisconsin - Madison, University of Wisconsin-Madison, University of Wisconsin
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Mark A Eriksson
University of Wisconsin - Madison