论文标题
普遍奇特量子计算的应用
Applications of Universal Parity Quantum Computation
论文作者
论文摘要
我们通过探索几种量子门算法(例如量子傅立叶变换和量子添加),证明了平均编码中的通用门设置的适用性,这是标准门模型的双重。将这些算法嵌入在均衡中,与传统的基于门基的实现相比,编码的奇偶校验降低了电路深度,同时保持多Qualbit Gate计数可比性。我们进一步提出了在量身定制的编码中简单实施多Quicat大门,并提出了准备图形状态的有效策略。
We demonstrate the applicability of a universal gate set in the parity encoding, which is a dual to the standard gate model, by exploring several quantum gate algorithms such as the quantum Fourier transform and quantum addition. Embedding these algorithms in the parity encoding reduces the circuit depth compared to conventional gate-based implementations while keeping the multiqubit gate counts comparable. We further propose simple implementations of multiqubit gates in tailored encodings and an efficient strategy to prepare graph states.