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Charge-Qubit Operation of an Isolated Double Quantum Dot

机译:隔离双量子点的电荷量子位运算

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摘要

We have investigated coherent time evolution of pseudomolecular states of an isolated (leadless) silicon double quantum dot, where operations are carried out via capacitively coupled elements. Manipulation is performed by short pulses applied to a nearby gate, and measurement is performed by a single-electron transistor. The electrical isolation of this qubit results in a significantly longer coherence time than previous reports for semiconductor charge qubits realized in artificial molecules.
机译:我们研究了一个隔离的(无铅)硅双量子点的假分子态的相干时间演化,该过程通过电容耦合元件进行。通过施加到附近栅极的短脉冲执行操作,并通过单电子晶体管执行测量。与以前在人工分子中实现的半导体电荷量子位的报告相比,该量子位的电隔离导致相干时间明显更长。

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