phonon是什么意思、ph中文翻译、发音、用法及例句

日期: 栏目:知识类 浏览:

  •

  phonon

  【fəunɔn】

  英:

  美:

  n.

  【物】声子(声音或振动能的量子)

  1 、

  phonon

  damping───声子衰减

  2 、

  phonon

  model───声子模型

  3 、

  phonon

  emission───声子发射

  4 、Raman scattering from

  phonon

  ───光子的拉曼散射

  5 、RAMAN SPECTRUM STUDY OF PHONON MODES FOR SINGLE WALL CARBON NANOTUBES ?───单层纳米碳管振动模的拉曼光谱研究

  6 、Antiferromagnetic transition has soft modulus effect while martensitic transformation is also accompanied by a soft

  phonon

  mode.───反铁磁转变存在模量软化,马氏体相变也具有声学软模。

  7 、LOCAL PHONON PROPERTIES OF GENERALIZED FIBONACCI QUASICRYSTALS───Fibonacci泛准晶的声子局部性质

  8 、

  phonon

  creation───声子产生

  9 、filling effect

  phonon

  ───声子

  10 、

  phonon

  drag───声子曳引

  11 、Keywords polyatomic polar crystals;magnetopolaron;strong-coupling;excitation energy;mean number of

  phonon

  ;───半无限极性晶体;磁极化子;强耦合;激发能量;平均声子数;

  12 、On the basis of the theory of

  phonon

  Greens function, the lineshape formula of

  phonon

  Brillouin spectrum is deduced, and the numerical results are reported.───以声子格林函数理论为基础,推导了简立方纳米晶体颗粒的声子布里渊光谱的线形公式,并给出了数值计算的结果。

  13 、Phonon dispersion curve───声子散射曲线

  14 、Keywords dislocation velocity;molecular dynamics simulation;

  phonon

  drag effect;───位错运动速度;分子动力学模拟;声子拖动效应;

  15 、Fluorogallate glass is a favorable kind of material for optical fiber lasers with transmitting infrared light at longer wavelength and lower

  phonon

  energy.───含镓氟化物玻璃具有较其它氟化物玻璃更宽的红外透过范围和更低的声子能量,显示出其是一种优质的激光基质材料。

  16 、Phonon dispersion relation calculations of armchair and zigzag carbon nanotubes───单壁碳纳米扶手椅、锯齿管声子色散关系的计算

  17 、

  phonon

  replica───声子伴线

  18 、THE ROLE OF PHONON IN HEAT CONDUCTION OF FRACTAL MEDIUM───分形介质导热问题中声子的作用

  19 、The generalized

  phonon

  density of states of Y-Ba-Cu-O superconductor (Tc=90.5K) have been measured at 289K and 87K respectively, by using Be filter detector neutron inelastic scattering spectrometer at Institute of Atomic Energy.───利用铍过滤探测器中子谱仪分别在298K及87K测量了Y-Ba-Cu-O超导体(T_e=90.5K)的广义声子谱。

  20 、Longitudinal Optic Phonon Modes in Super Short Period GaAs/AlAs Superlattices───GaAs/AlAs超短周期超晶格中的纵光学声子模

  21 、The Interface Optical Phonon and Electron-

  phonon

  Interaction in Multilayer Spherical Semiconductor Heterostructures───半导体球形异质结中界面光学声子及电声相互作用

  22 、

  phonon

  absorption───声子吸收

  23 、Role of

  phonon

  thermal conductivity in the minerals of the earths mantle───声子在地幔矿物热传递过程中的作用

  24 、The lattice dynamics martix can be reduced by using the symmetries of carbon nanotubes.The

  phonon

  frequencies and symmetries have been given.───利用碳管的对称性对其晶格动力学矩阵进行了约化,给出全部声子的频率以及振动模对称性。

  25 、FAR INFRARED SPECTRAL STUDY OF THE PHONON STATES OF THE MIXED CRYSTALS Cd_xHg_(1-x) Te───Cd_(x)Hg_(1-x)Te混晶声子谱的远红外光谱研究

  26 、

  phonon

  clrag───n. 声子曳引

  27 、Folded longitudinal acoustic

  phonon

  modes in ZnS-ZnSe strained-layer superlattice───ZnS-ZnSe应变层超晶格的纵声学声子折叠模

  28 、

  phonon

  track───声子径迹

  29 、

  phonon

  density───声子密度

  30 、Groung State of A One-Dimensional Electron Phonon System in Strong-Coupling───一维强耦合电子-光学声子系统的基态

  31 、

  phonon

  electron interaction───声子电子交互作用

  32 、

  phonon

  traveling wave amplifier───声子行波放大器

  33 、

  phonon

  maser───声子微波激射器

  34 、

  phonon

  echo───声子回波

  35 、

  phonon

  avalanche───声子雪崩

  36 、From the perspective of micromechanism.the

  phonon

  is the main medium of the heat transmission of the textiles.───从微观角度看,纺织品是声子作为载体实现热传导的。最后还介绍了影响织物导热系数的各个因素。

  37 、Influence of ElectronSurface Phonon StrongCoupling on Properties of Polaron in CdF_2 Semiconductor Slab+───CdF_2半导体膜中电子-表面声子强耦合对极化子性质的影响

  38 、Keywords

  phonon

  ;thermoequilibrium;Boltzmann equation;Landau equation;───声子;热平衡;玻耳兹曼方程;郎道方程;

  39 、

  phonon

  scattering matrix element───声子散射矩阵元素

  40 、On this assumption the

  phonon

  density of states has been calculated by the Cluster-Bethe-lattice Method (CBLM).───在此前提下,本文采用 CBLM方法(即 Cluster-Bethe-Lattice Method)计算了a-Si:H的声子态密度.

  41 、Keywords Low-Dimensional Quantum Structure;Quantum Wire;Coupling Effect;Acoustic Phonon Transport;Thermal Conductance;───低维纳米结构;量子线;耦合效应;声子输运;热导;

  42 、

  phonon

  lifetime───声子寿命

  43 、Temperature-Dependent Raman Scattering of Phonon Modes and Defect Modes in GaN and p-Type GaN Films───GaN和p型GaN薄膜中声子模和缺陷模的变温喇曼散射

  44 、The modulation of SBS pulse shape tends to occur with a short

  phonon

  lifetime.───声子寿命越短,SBS波形前沿就越陡,并且越容易出现调制现象。

  45 、mean number of optical

  phonon

  ───光学声子平均数

  46 、Norlinear Phonon Localized States in a One-dimensional Lattice───一维简单晶格声子非线性局域态

  47 、Keywords bismuth gallate glass;holmium/ytterbium-codoped;stimutated emission cross-section;upconversion fluorescence;low

  phonon

  energy;───关键词铋镓酸盐玻璃;钬/镱共掺;受激发射截面;上转换发光;低声子能量;

  48 、Near Resonance Scattering Studies of Longitudinal Optic Phonon Modes in GaAs/AlAs Superlattices───GaAs/AlAs超晶格中的纵光学声子模的近共振散射研究

  49 、A condensed soft optical

  phonon

  mode originates from the triply degenerate symmetric in-plane O-Nb-O bending.───一个软光学声子模来源于在铌-氧平面内的三重简并对称弯曲振动。

  50 、ballistic

  phonon

  ───发射光子

  51 、Fluoride glasses have a lower

  phonon

  energy compared to oxide glasses, therefore the probability of non - radiative trasition is low and qantum efficiency of upconversion is high.───和传统的氧化物玻璃相比,氟化物玻璃具有声子能量低的特点,因此无辐射跃迁几率小,上转换量子效率高,使得掺稀土离子的氟化物玻璃具有高的发光效率。

  52 、Keywords quasi-crystal bar;

  phonon

  field;phason field;wave equation;speed of wave;───准晶杆;声子场;相位子场;波动方程;波速;

  53 、Keywords Li2B4O7 single crystal;specific heat;thermal diffusivity;thermal conductivity;

  phonon

  mean;───7晶体;比热;导温系数;导热系数;声子平均自由程;

  54 、Optical Phonon Raman Spectroscopy in SiC Nanorods───SiC纳米棒光学声子的喇曼光谱

  55 、

  phonon

  coupled level───声子耦合能级

  56 、

  phonon

  wind───声子风

  57 、

  phonon

  fluctuation model───声子波动模型

  58 、CASTEP can give information about total energies, forces and stresses on an atomic system, as well as calculating optimum geometries, band structures, optical spectra,

  phonon

  spectra and much more.───CASTEP能在一个原子系统上给全部的精力,力量和压力的信息,以及计算最佳几何学,乐队结构,光系列,声子系列并且更多。

  59 、For all the calculated physical properties, the results of

  phonon

  spectra, state density, specific heat and Debye temperature are better than that of Griinsisen constant and expansion coefficient.───在所预测的基本物性中,声子谱、态密度、比热和德拜温度的计算值与实验结果符合得较好,而格律乃森常数和热膨胀系数的计算值与实验结果符合得稍差。

  60 、Influence of Phonon Dispersion, Magnetic Field and Coupling Strength on Properties of Polaron───声子色散和磁场对极化子基态的影响

  61 、Influence of Phonon Dispersion on the Properties of Magnetopolaron in a Quantum Dot: Squeezed-state Variational Approach───声子色散对量子点中磁极化子性质的影响:压缩态变分法

  62 、

  phonon

  annihilation───声子湮没

  63 、Calculation of Phonon Dispersions for Bl-MoN and Bl-WN Crystals───B1结构MoN和WN晶体声子谱的计算

  64 、Optical Phonon Raman Scattering from In 1-x-y Ga xAl yAs/InP Quaternary Alloys───MBE生长的In_(1-x-y)Ga_xAl_yAs/InP四元混晶的拉曼散射

  65 、

  phonon

  expansion───声子展开式

  66 、quasi-confined optical

  phonon

  modes───准受限光学声子模

  67 、

  phonon

  matrix element───声子矩阵元素

  68 、

  phonon

  band───声子带

  69 、Keywords MAEAM,lattice dynamics,

  phonon

  spectra,state density,specific heat,Debye temperature,Griinsisen constant,expansion coefficient;───分析型嵌入原子模型;晶格动力学;声子谱;声子态密度;比热;德拜温度;格律乃森常数;热膨胀系数;

  70 、

  phonon

  feature───声子特点

  71 、

  phonon

  excitation───声子激励

  72 、On the basis of this result, the

  phonon

  structure is studied, along with calculation of the energy levels and state densities of

  phonon

  s.───以此为基础,研究了简立方纳米晶体颗粒的声子结构,计算了其声子能级和声子态密度。

  73 、Topics covered include crystal structure and band theory, density functional theory, a survey of properties of metals and semiconductors, quantum Hall effect,

  phonon

  s, electron

  phonon

  interaction and superconductivity.───内容包括了晶体结构和能带理论,密度泛函理论,金属和半导体特性概论,量子霍尔效应,声子,电子-声子的相互作用以及超导电性。

  74 、

  phonon

  laser───声子激光器

  75 、Keywords NZP family ceramics;thermal conductivity;

  phonon

  mean free path;───NZP陶瓷;导热系数;声子平均自由程;

  76 、

  phonon

  coherent oscillation───声子相干振荡

  77 、

  phonon

  liberation───声子逸出

  78 、Phonon Calculation of Single Wall Carbon Nanotube───单壁碳纳米管声子谱计算

  79 、

  phonon

  effectiveness───声子有效性

  80 、A three part group assignment will cover the (1) physical structure, (2) the

  phonon

  spectra, and (3) the band structure of a semiconductor.───一份三个子环节的小组作业,覆盖半导体的:(1)物理结构,(2)声子谱,以及(3)带结构。

  crystal lee是什么意思?

  crystal lee

  水晶李

  例句:

  1.A computer emulation technique is applied to teaching of metal cutting principle. The shearing, slipping and stretch process of metal crystal grain in cutting deformation zone are described vividly by computer multi-media technique of picture and sound demonstration. Based on the formulas of Merchant, Lee and Shaffer, together with the experimental results of cutting force, the variations of friction and shear plant angle in cutting process are emulated dynamically.

  把计算机动画模拟和仿真技术应用到金属切削原理的教学中,利用图象、动画、声音播放等多媒体技术,演示金属削切变形区中金属晶粒的剪切、滑移和拉伸的过程,根据Merchant和LeeandShaffer公式以及切削力实验数据,动态仿真切削时摩擦角和剪切角的变化情况,并对两公式的计算结果进行比较。

  2.The Lee Low Pines ( LLP) method was applied to study the polaron properties in a polar crystal slab with the intermediate electron optical phono coupling. By solving the differential equation derived by LLP method an exact form of the phonon distribution function was obtained. And the polaron ground state energy was calculated with it.

  给出声子分布函数的解析表达式,并利用该表达式和Lee-Low-Pines(LLP)变分方法计算极性晶体板中极化子的基态能量,与自恰的数值结果进行比较,结果吻合.

  超导体的电阻

  这样电阻也不是为零的。 现在的科学能解释的只有第一类超导体,也就是所谓的纯金属 降低到临界温度之下,显示出来的超导电性。 在这种状态之下,由于金属离子的晶格中带正电,电子带负电,电子通过晶格震动时产生声子(phonon) 吸引自旋相对的电子,产生 库伯对 (cooper pair) 这些库伯对之间的能量高于 电子和晶格离子之间的能量,所以不发生能量交换。 这样就不存在电阻了。 具体的你可以 在维基百科里查一下,有很多资料

标签: