Nanophononics: Thermal Generation, Transport, and Conversion at the Nanoscale
暫譯: 奈米聲子學:奈米尺度的熱生成、傳輸與轉換
Zlatan Aksamija
- 出版商: Pan Stanford Publish
- 出版日期: 2017-11-16
- 售價: $4,170
- 貴賓價: 9.5 折 $3,962
- 語言: 英文
- 頁數: 244
- 裝訂: Hardcover
- ISBN: 9814774413
- ISBN-13: 9789814774413
海外代購書籍(需單獨結帳)
商品描述
Heat in most semiconductor materials, including the traditional group IV elements (Si, Ge, diamond), III–V compounds (GaAs, wide-bandgap GaN), and carbon allotropes (graphene, CNTs), as well as emerging new materials like transition metal dichalcogenides (TMDCs), is stored and transported by lattice vibrations (phonons). Phonon generation through interactions with electrons (in nanoelectronics, power, and nonequilibrium devices) and light (optoelectronics) is the central mechanism of heat dissipation in nanoelectronics.
This book focuses on the area of thermal effects in nanostructures, including the generation, transport, and conversion of heat at the nanoscale level. Phonon transport, including thermal conductivity in nanostructured materials, as well as numerical simulation methods, such as phonon Monte Carlo, Green’s functions, and first principles methods, feature prominently in the book, which comprises four main themes: (i) phonon generation/heat dissipation, (i) nanoscale phonon transport, (iii) applications/devices (including thermoelectrics), and (iv) emerging materials (graphene/2D). The book also covers recent advances in nanophononics―the study of phonons at the nanoscale. Applications of nanophononics focus on thermoelectric (TE) and tandem TE/photovoltaic energy conversion. The applications are augmented by a chapter on heat dissipation and self-heating in nanoelectronic devices. The book concludes with a chapter on thermal transport in nanoscale graphene ribbons, covering recent advances in phonon transport in 2D materials.
The book will be an excellent reference for researchers and graduate students of nanoelectronics, device engineering, nanoscale heat transfer, and thermoelectric energy conversion. The book could also be a basis for a graduate special topics course in the field of nanoscale heat and energy.
商品描述(中文翻譯)
熱量在大多數半導體材料中儲存和傳輸,包括傳統的第四族元素(矽、鍺、鑽石)、第三-五族化合物(砷化鎵、寬帶隙氮化鎵)以及碳同素異形體(石墨烯、碳納米管),還有新興材料如過渡金屬二硫化物(TMDCs),主要是透過晶格振動(聲子)來進行。聲子通過與電子(在奈米電子學、功率和非平衡設備中)和光(光電子學)的相互作用生成,是奈米電子學中熱量散失的核心機制。
本書專注於奈米結構中的熱效應,包括在奈米尺度上熱量的生成、傳輸和轉換。聲子傳輸,包括奈米結構材料中的熱導率,以及數值模擬方法,如聲子蒙特卡羅、格林函數和第一原理方法,在本書中佔有重要地位,書中包含四個主要主題:(i)聲子生成/熱量散失,(ii)奈米尺度聲子傳輸,(iii)應用/設備(包括熱電材料),以及(iv)新興材料(石墨烯/二維材料)。本書還涵蓋了奈米聲子學的最新進展——即在奈米尺度上研究聲子的學科。奈米聲子學的應用重點在於熱電(TE)和串聯熱電/光伏能量轉換。這些應用還增添了一章關於奈米電子設備中的熱量散失和自加熱的內容。本書最後一章探討了奈米尺度石墨烯帶中的熱傳輸,涵蓋了在二維材料中聲子傳輸的最新進展。
本書將成為奈米電子學、設備工程、奈米尺度熱傳遞和熱電能量轉換研究人員及研究生的優秀參考資料。本書也可以作為奈米尺度熱量和能量領域的研究生專題課程的基礎。