论文标题
具有变异量子本量和双统一耦合群集方法的量子计算机上的资源有效化学
Resource Efficient Chemistry on Quantum Computers with the Variational Quantum Eigensolver and The Double Unitary Coupled-Cluster approach
论文作者
论文摘要
量子模拟算法的应用以在嘈杂的中间量子量子(NISQ)设备上获得分子的电子能,需要仔细考虑描述复杂电子相关效应的资源。在建模第二定量问题时,面临的最大挑战是量子数的数量与分子基础的大小线性缩放。这对化学过程量子模拟中包含的基集和相关电子的数量构成了显着限制。为了解决此问题并启用对NISQ计算机的更现实的模拟,我们采用双统一耦合群集(DUCC)方法有效地将相关效应降低到降低的尺寸轨道空间中,通常称为活动空间。使用折叠技术,我们证明了正确构建的有效哈密顿量可以捕获小型活跃空间中整个轨道空间的效果。将下折的预处理技术与变量量子本质量器相结合,我们使用DUCC降低的活性空间来解决$ \ text {h} _2 $和$ \ text {h} _2 _2 $和$ \ text {li} _2 $的地面能量。我们将这些结果与完整的配置相互作用和高级耦合群集参考计算进行了比较。
Applications of quantum simulation algorithms to obtain electronic energies of molecules on noisy intermediate-scale quantum (NISQ) devices require careful consideration of resources describing the complex electron correlation effects. In modeling second-quantized problems, the biggest challenge confronted is that the number of qubits scales linearly with the size of molecular basis. This poses a significant limitation on the size of the basis sets and the number of correlated electrons included in quantum simulations of chemical processes. To address this issue and to enable more realistic simulations on NISQ computers, we employ the double unitary coupled-cluster (DUCC) method to effectively downfold correlation effects into the reduced-size orbital space, commonly referred to as the active space. Using downfolding techniques, we demonstrate that properly constructed effective Hamiltonians can capture the effect of the whole orbital space in small-size active spaces. Combining the downfolding pre-processing technique with the Variational Quantum Eigensolver, we solve for the ground-state energy of $\text{H}_2$ and $\text{Li}_2$ in the cc-pVTZ basis using the DUCC-reduced active spaces. We compare these results to full configuration-interaction and high-level coupled-cluster reference calculations.