Full Quantum Effects in Condensed Matter Physics出版済み 6-8週間でお届けいたします。
Title: Full Quantum Effects in Condensed Matter Physics Subtitle: Beyond the Born-Oppenheimer Approximation Author: Wang, Enge (Peking University, Beijing) Publisher: Cambridge University Press ISBN: 9781009563918 Cover: HARDCOVER Date: 2026年05月 こちらの商品は学校・法人様向け(機関契約)のオンラインブック版がございます。 オンラインブックの価格、納期につきましては弊社営業員または当ECサイトよりお問い合わせください。 ![]() DESCRIPTION 物性物理学における完全量子効果:ボルン・オッペンハイマー近似を越えて 電子と核の両方を量子力学的に扱った場合、凝縮体がどのように異なるのか、またなぜ異なるのかを分析します。 最先端の完全量子論的および実験的手法を提示する本書は、物理学、化学、材料、エネルギーおよび環境科学の学部生、大学院生、研究者、業界専門家にとって有益です。 As physical science advances, theoretical simulations become increasingly reflective of realistic systems, and experimental observations become more precise and refined. Thus, going beyond the Born-Oppenheimer approximation is inevitable. This book bases its discussion of condensed matter physics on the Schrödinger equation, considering both nuclear and electronic degrees of freedom. Particular attention is given to two types of phenomena: those, such as nuclear quantum effects, for which the Born-Oppenheimer approximation, although applicable in principle, is progressively weakened in practice, and those that cannot be applied at all, such as phenomena exhibiting non-adiabatic effects. In practical systems, the full quantum nature of condensed matter, as emphasized in this book, cannot be overlooked when performing accurate simulations or measurements of material properties. This book offers state-of-the-art quantum theoretical and experimental methods, valuable for undergraduates, graduates, researchers, and industry professionals in fields such as physics, chemistry, materials science, energy, and environmental science. Demonstrates how nuclear quantum effects and non-adiabatic effects can have detrimental consequences for the description of certain physical properties in the context of condensed-matter computational physics, which has so far often ignored these consequences Describes both theoretical and experimental research methods Suggests the application of the included research methods to other fields, such as energy and environmental science TABLE OF CONTENTS 1. Overview of full quantum effects in condensed matter 2. Full quantum effects in condensed matter physics 3. Full quantum effects in chemistry 4. Basic theory: electronic structure 5. Theory for full quantum effects 6. Experiments for full quantum effects 7. Typical full-quantum-effect system: hydrogen 8. Typical full-quantum-effect systems: other elements 9. Full quantum effects in energy applications 10. Full quantum effects in environmental applications 11. Full Quantum effects in device applications
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