中文

量子控制景观理论:被忽视的隐藏裂痕

量子物理 2017-11-13 v4

摘要

为何控制量子现象似乎容易实现?为何有效的量子控制似乎容易找到?为何化学合成与性质优化比预期更容易?如何解释量子力学、化学、材料科学、生物进化与工程学中最优控制应用的共性?Rabitz 教授及其同事发展了量子控制景观 (QCL) 理论以解答这些令人困惑的问题。不幸的是,所得结论遭受了严重的误解,并在数百篇已发表论文中传播。我们研究、总结并报告了 QCL 理论中若干此前未知的微妙之处,这些微妙之处对几乎所有实际应用都具有深远影响。

关键词

引用

@article{arxiv.1710.07753,
  title  = {Theory of quantum control landscapes: Overlooked hidden cracks},
  author = {Dmitry V. Zhdanov},
  journal= {arXiv preprint arXiv:1710.07753},
  year   = {2017}
}

备注

The explanation of why the key result of the paper B. Russell, H. Rabitz, R.-B. Wu, J. Phys. A: Math. Theor. 50, 205302 (2017) [ arXiv:1608.06198 ] is wrong is significantly simplified and complemented by a demonstrative example. Various changes were introduced to fully adapt all parts of presentation for readers unfamiliar with differential topology. 5 pages, 3 figures