论文标题

量子有限自动机对化学反应进行建模

A Quantum Finite Automata Approach to Modeling the Chemical Reactions

论文作者

Bhatia, Amandeep Singh, Zheng, Shenggen

论文摘要

近年来,建模兴趣从分子水平到原子量表显着增加。计算化学领域在设计计算模型中起着重要的作用,用于用于从原子和分子到工业规模过程的系统的运行和模拟。它受到计算能力和算法效率的巨大影响。使用经典自动机理论以热力学术语对化学反应的表示对计算机科学有很大影响。使用量子计算模型对化学信息处理的研究是一个自然目标。在本文中,我们使用双向量子有限自动机对化学反应进行了建模,这些自动机在线性时间内停止。此外,经典的下降自动机可以设计用于多个堆栈的这种化学反应。已经证明,可以通过结合化学接受/拒绝签名和量子自动机模型来提高计算多功能性。

In recent years, the modeling interest has increased significantly from the molecular level to the atomic and quantum scale. The field of computational chemistry plays a significant role in designing computational models for the operation and simulation of systems ranging from atoms and molecules to industrial-scale processes. It is influenced by a tremendous increase in computing power and the efficiency of algorithms. The representation of chemical reactions using classical automata theory in thermodynamic terms had a great influence on computer science. The study of chemical information processing with quantum computational models is a natural goal. In this paper, we have modeled chemical reactions using two-way quantum finite automata, which are halted in linear time. Additionally, classical pushdown automata can be designed for such chemical reactions with multiple stacks. It has been proven that computational versatility can be increased by combining chemical accept/reject signatures and quantum automata models.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源