论文标题

量子状态制备和对角算子的非自动进化

Quantum State Preparation and Non-Unitary Evolution with Diagonal Operators

论文作者

Schlimgen, Anthony W., Head-Marsden, Kade, Sager-Smith, LeeAnn M., Narang, Prineha, Mazziotti, David A.

论文摘要

实现基于统一的量子的量子设备上的非单身转换对于模拟各种物理问题(包括开放量子系统和亚范围量子状态)至关重要。我们提出了一种基于扩张的算法,以使用仅使用一个Ancilla量子量的概率量子计算来模拟非自动操作。我们利用奇异值分解(SVD)将任何通用量子运算符分解为两个单一操作员和对角线非单身操作员的产物,我们表明可以通过对角度膨胀空间中的对角线单一操作员来实施。虽然扩张技术增加了计算中的Qubits数量,因此增加了栅极的复杂性,但我们的算法将扩张空间中所需的操作限制为对角线统一操作员,该操作员已知电路分解。我们使用该算法在具有高保真度的量子设备上准备随机的亚标准化两级状态。此外,我们介绍了在Dephasing通道中的两级开放量子系统和在量子设备上计算的振幅阻尼通道的准确非自然动力学。介绍的算法对于可以轻松计算SVD时实施一般非自动操作最有用,在嘈杂的中间规模量子计算时代,大多数运营商就是这种情况。

Realizing non-unitary transformations on unitary-gate based quantum devices is critically important for simulating a variety of physical problems including open quantum systems and subnormalized quantum states. We present a dilation based algorithm to simulate non-unitary operations using probabilistic quantum computing with only one ancilla qubit. We utilize the singular-value decomposition (SVD) to decompose any general quantum operator into a product of two unitary operators and a diagonal non-unitary operator, which we show can be implemented by a diagonal unitary operator in a 1-qubit dilated space. While dilation techniques increase the number of qubits in the calculation, and thus the gate complexity, our algorithm limits the operations required in the dilated space to a diagonal unitary operator, which has known circuit decompositions. We use this algorithm to prepare random sub-normalized two-level states on a quantum device with high fidelity. Furthermore, we present the accurate non-unitary dynamics of two-level open quantum systems in a dephasing channel and an amplitude damping channel computed on a quantum device. The algorithm presented will be most useful for implementing general non-unitary operations when the SVD can be readily computed, which is the case with most operators in the noisy intermediate-scale quantum computing era.

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