Exploring Quantum Contextuality with Photons
暫譯: 探索光子的量子情境性

Liu, Zheng-Hao

  • 出版商: Springer
  • 出版日期: 2024-11-22
  • 售價: $6,100
  • 貴賓價: 9.5$5,795
  • 語言: 英文
  • 頁數: 156
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 9819961696
  • ISBN-13: 9789819961696
  • 相關分類: 量子 Quantum
  • 海外代購書籍(需單獨結帳)

相關主題

商品描述

This thesis highlights research explorations in quantum contextuality with photons.
Quantum contextuality is one of the most intriguing and peculiar predictions of quantum mechanics. It is also a cornerstone in modern quantum information science. It is the origin of the famous quantum nonlocality and various nonclassical paradoxes. It is also a resource for many quantum information processing tasks and even universal quantum computing. Therefore, the study of quantum contextuality not only advances the comprehension of the foundations of quantum physics, but also facilitates the practical applications of quantum information technology.
In the last fifteen years, the study of quantum contextuality has developed from a purely theoretical level to a stage where direct experimental tests become amenable. However, the experimental research on contextuality at the current stage largely focuses on direct validations of some most famous predictions of contextuality, while other forms of contextuality and its practical applications in quantum information science are rarely involved. The research in this thesis is committed to bridge this gap from two directions: (1) to construct and test stronger forms of contextuality and relieve the requirements of contextuality experiments on experimental platforms, and (2) to explore the connections between contextuality and the other concepts in quantum information science and directly demonstrate the application of contextuality in broader scenarios. Specifically, the thesis have discussed the research topics about the relationship between quantum contextuality and nonlocality, the "all-versus-nothing" paradoxes from quantum contextuality, the ore- and post-selection paradoxes from quantum contextuality, and the topological protection and braiding dynamics of quantum contextuality in quasiparticle systems.

商品描述(中文翻譯)

本論文強調了在光子領域中對量子情境性(quantum contextuality)的研究探索。量子情境性是量子力學中最引人入勝且最奇特的預測之一,也是現代量子資訊科學的基石。它是著名的量子非局域性(quantum nonlocality)和各種非經典悖論的根源,也是許多量子資訊處理任務甚至通用量子計算的資源。因此,對量子情境性的研究不僅促進了對量子物理基礎的理解,還有助於量子資訊技術的實際應用。

在過去的十五年中,量子情境性的研究已經從純理論層面發展到可以進行直接實驗測試的階段。然而,目前階段的情境性實驗研究主要集中在對一些最著名的情境性預測的直接驗證,而其他形式的情境性及其在量子資訊科學中的實際應用則鮮有涉及。本論文的研究致力於從兩個方向彌補這一空白:(1)構建和測試更強形式的情境性,並減輕情境性實驗對實驗平台的要求;(2)探索情境性與量子資訊科學中其他概念之間的聯繫,並直接展示情境性在更廣泛場景中的應用。具體而言,本論文討論了量子情境性與非局域性之間的關係、來自量子情境性的「全有或全無」悖論、來自量子情境性的前選擇和後選擇悖論,以及在準粒子系統中量子情境性的拓撲保護和編織動力學。

作者簡介

Zheng-Hao Liu is a postdoctoral researcher at Technical University of Denmark. His research orientation includes foundations of quantum theory, quantum simulation and quantum computation.

He obtained his Ph.D. in quantum information (2022) and B.Sc. in physics (2017) at the University of Science and Technology of China. He was an exchange student in the University of Michigan (2016).

作者簡介(中文翻譯)

鄭浩劉是丹麥科技大學的博士後研究員。他的研究方向包括量子理論的基礎、量子模擬和量子計算。

他於中國科學技術大學獲得量子信息的博士學位(2022年)和物理學的學士學位(2017年)。他曾於2016年在密西根大學擔任交換學生。