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Implementation Schemes for the Factorized Quantum Lattice-Gas Algorithm for the One Dimensional Diffusion Equation using Persistent-Current Qubits

机译:一维扩散方程基于持久性量子位的因式量子格子-气体算法的实现方案

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摘要

We present two experimental schemes that can be used to implement the Factorized Quantum Lattice-Gas Algorithm for the 1D Diffusion Equation with Persistent-Current (PC) Qubits. One scheme involves biasing the PC Qubit at multiple flux bias points throughout the course of the algorithm. An implementation analogous to that done in Nuclear Magnetic Resonance (NMR) Quantum Computing is also developed. Errors due to a few key approximations utilized are discussed and differences between the PC Qubit and NMR systems are highlighted.
机译:我们提出了两个实验方案,可用于对具有永久电流(PC)量子位的一维扩散方程实施因式分解量子格子-气体算法。一种方案涉及在整个算法过程中在多个通量偏置点偏置PC Qubit。还开发了类似于在核磁共振(NMR)量子计算中完成的实现。讨论了由于使用了一些关键近似值而引起的误差,并突出了PC Qubit和NMR系统之间的差异。

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