基本信息
书名:介电体超晶格(下)
定价:198.00元
作者:朱永元,王振林,陈延峰,陆延青,祝世宁
出版社:南京大学出版社
出版日期:2017-03-01
ISBN:9787305179167
字数:
页码:514
版次:1
装帧:精装
开本:16开
商品重量:0.4kg
编辑推荐
内容提要
介电体超晶格是一种在光电子学、声电子学、量子信息学领域有重大应用前景的新型功能材料,《介电体超晶格(下)》是介电体超晶格的下半部分内容,是由作者团队从有关介电体超晶格研究的数百篇文章中精选出的部分内容,能清晰地描绘出该领域的发展轨迹、学术系统和科学内涵。
目录
第五章 离子型声子晶体与超构材料
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 准相位匹配量子光学与光子芯片
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 介电体超晶格与畴工程学
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 光学超晶格的应用研究
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 总结与展望
附录 新的重要成果收录
作者介绍
文摘
序言
《介电体超晶格(下)》这个书名,激起了我对微观世界精妙构造的无限遐想。我猜想,这本书会带领我们深入探索介电体超晶格的物理本质,揭示其独特的电子、光学或声学特性。作为“下”册,它很可能在基础理论之外,会重点关注更复杂的结构设计、新颖的物理现象,以及更广泛的应用前景。我特别希望书中能介绍一些前沿的研究成果,比如如何通过巧妙的结构设计来调控材料的折射率、介电常数,甚至诱导出负折射率等奇特效应。 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.
评分作为一名对凝聚态物理领域有着浓厚兴趣的学习者,看到《介电体超晶格(下)》这个书名,我的脑海中立刻浮现出无数关于材料设计与性能调控的画面。我猜想,这本书的编著者们,诸如朱永元、王振林、陈延峰、陆延青、祝世宁这些在学术界享有盛誉的学者,一定在这本书中倾注了他们多年的研究心血和独到见解。我尤其关注的是,他们是如何将“超晶格”这一概念与“介电体”这一材料类别巧妙结合起来,创造出前所未有的物理现象。这本书的“下”卷,更让我觉得内容会更加丰富和深入。我希望它能够提供一些前沿的理论模型,解释介电体超晶格的集体激发、相变行为,甚至是一些非线性光学效应。同时,我也期待书中能有对实验技术和制备工艺的详细介绍,因为了解这些,对于理解和复现研究成果至关重要。我甚至可以想象,书中的某些章节会涉及如何通过精确控制超晶格的结构参数,来实现对光波、声波甚至电磁波的操控,这听起来就充满了巨大的应用前景,比如在通信、传感、能源等领域。这本书的书名,本身就是一本打开新世界大门的钥匙。
评分从《介电体超晶格(下)》这个书名来看,我预感到这本书会是一部非常具有深度和前瞻性的学术著作。我可以想象,它一定集结了该领域顶尖学者的智慧,为我们呈现一个更加宏大和复杂的介电体超晶格世界。我特别关注的是,这本书是否会探讨一些更高级的理论框架,来解释这些人工周期结构所表现出的奇异物理性质。例如,关于声子晶体、光子晶体等概念,在介电体超晶格中可能会有更精妙的体现。我期待书中能够提供一些关于材料设计、性能模拟以及实验验证的最新进展。对于“下”卷,我更是充满了期待,因为它往往意味着对前沿问题的深入挖掘和对复杂现象的系统阐释。我希望能够从中学习到如何设计出具有特定功能,比如高效率能量转换、新型传感器件,或是高性能光学器件的介电体超晶格材料。这本书的书名本身就暗示着一种对物质世界的深度探索,以及对人类创造力的极致展现。
评分《介电体超晶格(下)》这个书名,让我联想到的是一种精巧的科学艺术。介电体本身是我们日常生活中非常熟悉的材料,但当它们被组织成“超晶格”这种人工周期结构时,其性质就可能发生翻天覆地的变化,这本身就是一种令人惊叹的创造。我猜测,这本书将会深入剖析这种结构与性质之间的复杂关系。也许,它会详细介绍不同维度、不同周期性模式的介电体超晶格,以及它们各自独特的物理特性。我特别好奇,书中是否会涉及到一些非常规的介电体材料,或者是一些非常规的超晶格设计理念,从而引发一些意想不到的物理现象。 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.
评分这本书的书名真的太吸引人了,《介电体超晶格(下)》。光是“介电体超晶格”这几个字,就充满了科学的神秘感和前沿探索的意味。我一直对材料科学领域,尤其是那些能够通过人工结构设计来获得新颖物理性质的材料非常着迷。虽然这本书的具体内容我还没有深入了解,但我能想象到,它一定是在为我们揭示介电体超晶格这个领域的更深层奥秘。不知道它会如何解析这些微观世界的精妙结构,又会如何阐述它们在宏观层面展现出的独特功能。我特别好奇,书中是否会深入探讨一些具体的超晶格结构的设计原理,比如如何精确控制层厚、组分,以及界面效应等等。这些微小的尺度上的控制,往往是实现宏大功能的基础。而且,下册通常意味着在前一册的基础上,会更加深入、更加系统。我期待它能带我进入一个更复杂、更精妙的超晶格世界,让我对其在光、电、声等方面的应用潜力有更深刻的理解。这本书的书名本身就承诺着一场关于物质本质和设计智慧的探索之旅,我迫不及待地想开始这段旅程。
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