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QUANTUM COMPUTATION OF MOLECULAR EXCITED STATES IN THE PRESENCE OF HAMILTONIAN SYMMETRIES

机译:哈密​​顿对称存在下的分子激发态的量子计算

摘要

Techniques regarding quantum computation of molecular excited states are provided. For example, one or more embodiments described herein can comprise a system, which can comprise a memory that can store computer executable components. The system can also comprise a processor, operably coupled to the memory, and that can execute the computer executable components stored in the memory. The computer executable components can comprise an initialization component that can categorize a plurality of excited operators from a mapped qubit Hamiltonian into sectors based on a commutation property of the plurality of excited operators with a symmetry from the mapped qubit Hamiltonian. The computer executable components can also comprise a matrix component that can generate an equation of motion matrix from an excited operator from the plurality of excited operators based on the sectors categorized by the initialization component.
机译:提供了关于分子激发态的量子计算的技术。例如,本文描述的一个或多个实施例可以包括一种系统,该系统可以包括可以存储计算机可执行组件的存储器。该系统还可以包括处理器,该处理器可操作地耦合到存储器,并且可以执行存储在存储器中的计算机可执行组件。计算机可执行组件可以包括初始化组件,该初始化组件可以基于多个被激发的算子的对称性,基于多个被激发的算子的交换性质,将多个被激发的算子从哈密顿算子划分为多个扇区。所述计算机可执行组件还可以包括矩阵组件,所述矩阵组件可以基于由所述初始化组件分类的扇区,从所述多个激励算子中的一个激励算子生成运动矩阵方程。

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