Self-Cavity Electrodynamics of Van Der Waals Heterostructures
暫譯: 范德瓦耳斯異質結構的自腔電動力學

Kipp, Gunda

  • 出版商: Springer
  • 出版日期: 2026-09-02
  • 售價: $2,690
  • 貴賓價: 9.5$2,555
  • 語言: 英文
  • 頁數: 248
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3032319781
  • ISBN-13: 9783032319784
  • 相關分類: 量子 Quantum
  • 海外代購書籍(需單獨結帳)

商品描述

This open access book represents an outstanding contribution to the study of light-matter interaction in quantum materials. It establishes that van der Waals heterostructures naturally act as terahertz plasmonic cavities, in which confined electromagnetic modes strongly couple to electronic excitations. This discovery reframes the low-energy electrodynamics of two-dimensional materials and provides a foundation for exploring cavity-mediated quantum phenomena in the solid state. Equally significant is the development of an on-chip terahertz spectroscopy platform capable of measuring the optical conductivity of gate-tunable two-dimensional materials in the near field. This experimental advance overcomes longstanding diffraction and sensitivity limits, opening new routes to probe collective excitations in micro-structured quantum material devices. This book is exemplary in its combination of conceptual depth, technical precision, and clarity of presentation. It is likely to serve as a reference for future studies of cavity-coupled and non-equilibrium phenomena in low-dimensional systems.

商品描述(中文翻譯)

這本開放存取的書籍對於量子材料中光與物質相互作用的研究做出了卓越的貢獻。它確立了范德瓦爾斯異質結構自然地作為太赫茲等離子體腔,其中受限的電磁模式與電子激發強烈耦合。這一發現重新定義了二維材料的低能電動力學,並為探索固態中腔介導的量子現象提供了基礎。同樣重要的是,開發了一個片上太赫茲光譜平台,能夠在近場測量可調閘極的二維材料的光學導電性。這一實驗進展克服了長期以來的衍射和敏感度限制,開啟了探測微結構量子材料裝置中集體激發的新途徑。這本書在概念深度、技術精確性和表達清晰度的結合上堪稱典範,未來可能成為低維系統中腔耦合和非平衡現象研究的參考資料。

作者簡介

Gunda Kipp completed her undergraduate and master studies in Physics at the University of Hamburg, Germany, including one semester at Uppsala University in Sweden. She was awarded the Otto Stern Prize for the best Master's thesis in 2019. Gunda then continued as a doctoral researcher in experimental condensed matter physics at the Max Planck Institute for the Structure and Dynamics of Matter in Hamburg under the supervision of Prof. Dr. James McIver. She received her Ph.D. from the University of Hamburg in 2025. In January 2026 she transitioned to a postdoctoral position at ETH Zurich, where she continues her research on controlling strongly correlated phases in van der Waals heterostructures through cavity-engineered quantum fluctuations.

作者簡介(中文翻譯)

Gunda Kipp 在德國漢堡大學完成了物理學的本科和碩士學位,其中包括在瑞典烏普薩拉大學的一個學期。她於2019年獲得奧托·斯特恩獎,以表彰最佳碩士論文。隨後,Gunda 在漢堡的馬克斯·普朗克物質結構與動力學研究所,於詹姆斯·麥克艾佛教授的指導下,繼續從事實驗凝聚態物理的博士研究。她於2025年獲得漢堡大學的博士學位。2026年1月,她轉任蘇黎世聯邦理工學院的博士後職位,繼續研究如何通過腔工程量子波動來控制范德瓦爾斯異質結構中的強相關相。