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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum computation in semiconductor quantum dots of electron-spin asymmetric anisotropic exchange
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Quantum computation in semiconductor quantum dots of electron-spin asymmetric anisotropic exchange

机译:电子自旋非对称各向异性交换的半导体量子点中的量子计算

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The universal quantum computation is obtained when there exists asymmetric anisotropic exchange between electron spins in coupled semiconductor quantum dots. The asymmetric Heisenberg model can be transformed into the isotropic model through the control of two local unitary rotations for the realization of essential quantum gates. The rotations on each qubit are symmetrical and depend on the strength and orientation of asymmetric exchange. The implementation of the axially symmetric local magnetic fields can assist the construction of quantum logic gates in anisotropic coupled quantum dots. This proposal can efficiently use each physical electron spin as a logical qubit in the universal quantum computation.
机译:当耦合的半导体量子点中的电子自旋之间存在非对称各向异性交换时,即可获得通用量子计算。通过控制两个局部unit旋,可以将非对称海森堡模型转换为各向同性模型,以实现基本的量子门。每个量子位上的旋转是对称的,并且取决于非对称交换的强度和方向。轴向对称局部磁场的实施可以帮助各向异性耦合量子点中的量子逻辑门的构造。该提议可以有效地将每个物理电子自旋用作通用量子计算中的逻辑量子位。

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