基本信息
書名:介電體超晶格(下)
定價:198.00元
作者:硃永元,王振林,陳延峰,陸延青,祝世寜
齣版社:南京大學齣版社
齣版日期:2017-03-01
ISBN:9787305179167
字數:
頁碼:514
版次:1
裝幀:精裝
開本:16開
商品重量:0.4kg
編輯推薦
內容提要
介電體超晶格是一種在光電子學、聲電子學、量子信息學領域有重大應用前景的新型功能材料,《介電體超晶格(下)》是介電體超晶格的下半部分內容,是由作者團隊從有關介電體超晶格研究的數百篇文章中精選齣的部分內容,能清晰地描繪齣該領域的發展軌跡、學術係統和科學內涵。
目錄
第五章 離子型聲子晶體與超構材料
5.1 Optical Properties of aIonic-Type Phononic Crystal
5.2 New Type of Polaritoia Piezoelectric Superlattice
5.3 Piezoelectric-Induced PolaritoCoupling ia Superlattice
5.4 Phonon-polaritons iQuasiperiodic Piezoelectric Superlattices
5.5 Coupling of Electromagic Waves and Superlattice Vibrations ia
Piezomagic Superlattice: Creatioof a PolaritoThrough the Piezomagic Effect
5.6 Coupled PhonoPolaritons ia Piezoelectric-piezomagic Superlattice
5.7 Mimicing Surface PhonoPolaritons iMicrowave Band Based oIonic-type Phononic Crystal
5.8 Magic PlasmoHybridizatioand Optical Activity at Optical Frequencies iMetallic Nanostructures
5.9 Stereometamaterials
5.10 Magic PlasmoPropagatioAlong a Chaiof Connected Subwavelength Resonators at Infrared Frequencies
5.11 Long-Wavelength Optical Properties of a Plasmonic Crystal
第六章 準相位匹配量子光學與光子芯片
6.1 Transforming Spatial Entanglement Using a Domain-Engineering Technique
6.2 Compact Engineering of Path-Entangled Sources from a Monolithic Quadratic Nonlinear Photonic Crystal
6.3 On-chip Steering of Entangled Photons iNonlinear Photonic Crystals
6.4 Lensless Imaging by Entangled Photons from Quadratic Nonlinear Photonic Crystals
6.5 Observatioof Quantum Talbot Effect from a Domain-engineered Nonlinear Photonic Crystal
6.6 Mode-locked BiphotoGeneratioby Concurrent Quasi-phase-matching
6.7 Generatioof NOON State with Orbital Angular Momentum ia Twisted Nonlinear Photonic Crystal
6.8 Tailoring Entanglement Through DomaiEngineering ia Lithium Niobate Waveguide
6.9 On-Chip Generatioand Manipulatioof Entangled Photons Based oReconfigurable Lithium-Niobate Waveguide Circuits
6.10 Generatioof Three-mode Continuous-variable Entanglement by Cascaded Nonlinear Interactions ia Quasiperiodic Superlattice
第七章 介電體超晶格與疇工程學
7.1 The Growth Striations and Ferroelectric DomaiStructures iCzochralski-growLiNbO3 Single Crystals
7.2 Growth of Optical Superlattice LiNbO3 with Different Modulating Periods and Its Applications iSecond-harmonic Generation
7.3 Growth of Nd3+-doped LiNbO3 Optical Superlattice Crystals and Its Potential Applications iSelf-frequency Doubling
7.4 Fabricatioof Acoustic Superlattice LiNbO3 by Pulsed Current Inductioand
Its Applicatiofor Crossed Field Ultrasonic Excitation
7.5 LiTaO3 Crystal Periodically Poled by Applying aExternal Pulsed Field
7.6 Poling Quality Evaluatioof Optical Superlattice Using 2D Fourier Transform Method
7.7 Frequency Self-doubling Optical Parametric Amplification. Noncollinear Red-
green-blue Lightsource Generatiobased oa Hexagonally Poled Lithium Tantalate
7.8 Direct Observatioof Ferroelectric Domains iLiTaO3 Using Environmental Scanning ElectroMicroscopy
7.9 Nondestructive Imaging of Dielectric-Constant Profiles and Ferroelectric Domains with
a Scanning-Tip Microwave Near-Field Microscope
第八章 光學超晶格的應用研究
8.1 Efficient Continuous Wave Blue Light GeneratioiOptical Superlattice
LiNbO3 by Direct Frequency Doubling a 978 nm InGaAs Diode Laser
8.2 Femtosecond Violet Light Generatioby Quasi-phase-matched Frequency
Doubling iOptical Superlattice LiNbO3
8.3 Visible Dual-wavelength Light GeneratioiOptical Superlattice Er: LiNbO3
through Upconversioand Quasi-phase-matched Frequency Doubling
8.4 Frequency Tuning of Optical Parametric Generator iPeriodically Poled
Optical Superlattice LiNbO3 by Electro-optic Effect
8.5 Electro-optic Effect of Periodically Poled Optical Superlattice LiNbO3
and Its Applications
8.6 High-power Red-green-blue Laser Light Source Based oIntermittent
Oscillating Dual-wavelength Nd.YAG Laser with a Cascaded LiTaO3 Superlattice
8.7 Diode-pumped 1988-nm Tm.YAP Laser Mode-locked by Intracavity
Second-harmonic GeneratioiPeriodically Poled LiNbO3
8.8 Efficiency-enhanced Optical Parametric DowConversiofor Mid-infrared
Generatiooa Tandem Periodically Poled MgO-doped Stoichiometric Lithium Tantalate Chip
8.9 Polarization-free Second-order Nonlinear Frequency ConversioUsing the Optical Superlattice
8.10 PolarizatioIndependent Quasi-phase-matched Sum Frequency Generatiofor Single PhotoDetection
8.11 DFB Semiconductor Lasers based oReconstruction-equivalent-chirp Technology
8.12 High Channel Count and High PrecisioChannel Spacing Multi-wavelength
第九章 總結與展望
附錄 新的重要成果收錄
作者介紹
文摘
序言
《介電體超晶格(下)》這個書名,激起瞭我對微觀世界精妙構造的無限遐想。我猜想,這本書會帶領我們深入探索介電體超晶格的物理本質,揭示其獨特的電子、光學或聲學特性。作為“下”冊,它很可能在基礎理論之外,會重點關注更復雜的結構設計、新穎的物理現象,以及更廣泛的應用前景。我特彆希望書中能介紹一些前沿的研究成果,比如如何通過巧妙的結構設計來調控材料的摺射率、介電常數,甚至誘導齣負摺射率等奇特效應。 Furthermore, I am keen to understand how the collective behavior of constituent materials within a superlattice structure leads to emergent properties that are not present in the individual components. The potential applications in areas such as advanced optics, energy storage, and sensing are particularly exciting. This book’s title promises a journey into the cutting edge of material science, where the interplay of structure and property leads to groundbreaking discoveries.
評分作為一名對凝聚態物理領域有著濃厚興趣的學習者,看到《介電體超晶格(下)》這個書名,我的腦海中立刻浮現齣無數關於材料設計與性能調控的畫麵。我猜想,這本書的編著者們,諸如硃永元、王振林、陳延峰、陸延青、祝世寜這些在學術界享有盛譽的學者,一定在這本書中傾注瞭他們多年的研究心血和獨到見解。我尤其關注的是,他們是如何將“超晶格”這一概念與“介電體”這一材料類彆巧妙結閤起來,創造齣前所未有的物理現象。這本書的“下”捲,更讓我覺得內容會更加豐富和深入。我希望它能夠提供一些前沿的理論模型,解釋介電體超晶格的集體激發、相變行為,甚至是一些非綫性光學效應。同時,我也期待書中能有對實驗技術和製備工藝的詳細介紹,因為瞭解這些,對於理解和復現研究成果至關重要。我甚至可以想象,書中的某些章節會涉及如何通過精確控製超晶格的結構參數,來實現對光波、聲波甚至電磁波的操控,這聽起來就充滿瞭巨大的應用前景,比如在通信、傳感、能源等領域。這本書的書名,本身就是一本打開新世界大門的鑰匙。
評分從《介電體超晶格(下)》這個書名來看,我預感到這本書會是一部非常具有深度和前瞻性的學術著作。我可以想象,它一定集結瞭該領域頂尖學者的智慧,為我們呈現一個更加宏大和復雜的介電體超晶格世界。我特彆關注的是,這本書是否會探討一些更高級的理論框架,來解釋這些人工周期結構所錶現齣的奇異物理性質。例如,關於聲子晶體、光子晶體等概念,在介電體超晶格中可能會有更精妙的體現。我期待書中能夠提供一些關於材料設計、性能模擬以及實驗驗證的最新進展。對於“下”捲,我更是充滿瞭期待,因為它往往意味著對前沿問題的深入挖掘和對復雜現象的係統闡釋。我希望能夠從中學習到如何設計齣具有特定功能,比如高效率能量轉換、新型傳感器件,或是高性能光學器件的介電體超晶格材料。這本書的書名本身就暗示著一種對物質世界的深度探索,以及對人類創造力的極緻展現。
評分這本書的書名真的太吸引人瞭,《介電體超晶格(下)》。光是“介電體超晶格”這幾個字,就充滿瞭科學的神秘感和前沿探索的意味。我一直對材料科學領域,尤其是那些能夠通過人工結構設計來獲得新穎物理性質的材料非常著迷。雖然這本書的具體內容我還沒有深入瞭解,但我能想象到,它一定是在為我們揭示介電體超晶格這個領域的更深層奧秘。不知道它會如何解析這些微觀世界的精妙結構,又會如何闡述它們在宏觀層麵展現齣的獨特功能。我特彆好奇,書中是否會深入探討一些具體的超晶格結構的設計原理,比如如何精確控製層厚、組分,以及界麵效應等等。這些微小的尺度上的控製,往往是實現宏大功能的基礎。而且,下冊通常意味著在前一冊的基礎上,會更加深入、更加係統。我期待它能帶我進入一個更復雜、更精妙的超晶格世界,讓我對其在光、電、聲等方麵的應用潛力有更深刻的理解。這本書的書名本身就承諾著一場關於物質本質和設計智慧的探索之旅,我迫不及待地想開始這段旅程。
評分《介電體超晶格(下)》這個書名,讓我聯想到的是一種精巧的科學藝術。介電體本身是我們日常生活中非常熟悉的材料,但當它們被組織成“超晶格”這種人工周期結構時,其性質就可能發生翻天覆地的變化,這本身就是一種令人驚嘆的創造。我猜測,這本書將會深入剖析這種結構與性質之間的復雜關係。也許,它會詳細介紹不同維度、不同周期性模式的介電體超晶格,以及它們各自獨特的物理特性。我特彆好奇,書中是否會涉及到一些非常規的介電體材料,或者是一些非常規的超晶格設計理念,從而引發一些意想不到的物理現象。 Furthermore, the title suggests a progression, implying that the "volume 2" will build upon foundational concepts presented elsewhere, diving into more complex phenomena and advanced applications. I am particularly interested in the potential for manipulating light and other electromagnetic waves within these structures, leading to applications in areas like photonic devices, metamaterials, and perhaps even novel forms of optical computing. The sheer elegance of designing materials at the nanoscale to achieve macroscopic functional benefits is what draws me to this topic.
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