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Electrical control of uniformity in quantum dot devices

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arxiv 2211.13493 v1 pith:FQTIMUNS submitted 2022-11-24 cond-mat.mes-hall quant-ph

classification cond-mat.mes-hallquant-ph
keywords quantumdevicespinch-offimplementationmethodscalablespintuning
verification ladder T0 review T1 audit T2 compute T3 formal
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Highly uniform quantum systems are essential for the practical implementation of scalable quantum processors. While quantum dot spin qubits based on semiconductor technology are a promising platform for large-scale quantum computing, their small size makes them particularly sensitive to their local environment. Here, we present a method to electrically obtain a high degree of uniformity in the intrinsic potential landscape using hysteretic shifts of the gate voltage characteristics. We demonstrate the tuning of pinch-off voltages in quantum dot devices over hundreds of millivolts that then remain stable at least for hours. Applying our method, we homogenize the pinch-off voltages of the plunger gates in a linear array for four quantum dots reducing the spread in pinch-off voltage by one order of magnitude. This work provides a new tool for the tuning of quantum dot devices and offers new perspectives for the implementation of scalable spin qubit arrays.

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