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Two-axis control of a singlet–triplet qubit with an integrated micromagnet

机译:带有集成微磁铁的单重态-三重态量子位的两轴控制

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摘要

Qubits, the quantum-mechanical analog of classical bits, are the fundamental building blocks of quantum computers, which have the potential to solve some problems that are intractable using classical computation. This paper reports the fabrication and operation of a qubit in a double-quantum dot in a silicon/silicon–germanium (Si/SiGe) heterostructure in which the qubit states are singlet and triplet states of two electrons. The significant advance over previous work is that a proximal micromagnet is used to create a large local magnetic field difference between the two sides of the quantum dot, which increases the manipulability significantly without introducing measurable noise.
机译:量子位是经典位的量子力学模拟,是量子计算机的基本构建块,具有解决经典计算难以解决的某些问题的潜力。本文报道了硅/硅锗锗(Si / SiGe)异质结构中双量子点中量子位的制造和操作,其中量子位态是两个电子的单重态和三重态。与以前的工作相比,显着的进步是使用了近端微磁体在量子点的两侧之间创建了较大的局部磁场差,从而在不引入可测量噪声的情况下显着提高了可操作性。

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