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纳米组件电性仿真软件 Virtual NanoLab v2008.10 [压缩包]

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发表于 2021-8-15 23:51:51 | 显示全部楼层 |阅读模式

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资源信息:



中文名


: 纳米组件电性仿真软件


英文名


: Virtual NanoLab v2008.10


资源格式


: 压缩包


发行时间


: 2008年


地区


: 美国


语言


: 英文


概述


:



语言:英语 网址:http://www.oracle.com/ 类别:其他软件 Atomistix Virtual Nanolab(纳米组件电性仿真软件)软件可用来开展原子尺度上的数值计算模拟,以“虚拟”实验方式,进行研究奈米结构。此软件是基于凝态物理、量子化学和电子传输理论等领域十多年的研究成果而研制的,可以计算任意奈米结构中原子或分子的位置及电子轨域。 特点: #针对开放系统在有限偏压状态下之自我一致性的DFT计算 #电子传输系数以及传输固有通道 #平行于输送方向的周期性边界条件 #针对NEGF计算的新高效率计算结构 #计算电子流与不平衡力 #散射状态与分子轨道的3-D影像 #LDA与GGA交换-相关泛函数 #原子位置的松弛现象 #虚位能与基准组态数据库 #分子动力学模拟 代码     ²  °² ° ²°    ° ° ° ²  ת  ²²²²      ת²°°²²²ת ת ת±±² ²  ²  °  °  °  °  ²² ²±±²            ²     ת²    ² ²   ²     ²±  ת     ² ²  ²²°          ת       ² ²²° ² ²² ²² ² °°  ² °  °²  ² ² °°  °² ² °   °² ² ²     ² °² ² ²     °² ² ²°°°² ²   °²²    zk. ² ²      ²° ° ²°±²²°°²² ² ²°²°² ²²°²°²±°² °²²°² ‏²±°°² °°°°°°°°°² °²²²² ²°  °°°²²²±²   ² °²   ²² ²²   ²²²  ²² ²² ²°²²² ²² ²°²²² ²² °°  °°²² ²°² ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ²² ִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²°°  °°²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ  ִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ ² ²  ²²   [ MOST PROUDLY PRESENTS ]   ²²  ²² ²² ² ² ° ° Virtual NanoLab v2008.10 (c) QuantumWise Supplier . : RECOiL Size ..... : 23 x 5.00MB Cracker .. : RECOiL Protection : FlexLM Packager . : RECOiL Type ..... : Utility Date ..... : 01-17-2009 OS ....... : Windows ° ° ² ² ²² ²² ° ²²²²     ²²²²° ° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²° [ RELEASE NOTES ] °²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ User-friendly atomic-scale modeling Virtual NanoLab (VNL) combines powerful atomic-scale modeling and NanoLanguage scripting in a user-friendly graphical interface. - Build complex atomic structures with a few mouse clicks - Generate NanoLanguage scripts - Visualize atomic geometries and calculated physical quantities in 3D Atomic-scale modeling is indispensable when it comes to simulating experiments and analyzing atomic-scale properties of nanoscale devices. The functionality of a nanoscale device is largely determined by the positions of individual atoms. It might change drastically if some atoms are replaced, added, or removed. Atomic-scale modeling makes you understand why your device works. Or why it doesn’t work! Virtual NanoLab is based on Atomistix ToolKit (ATK) and gives access to state-of-the-art modeling techniques, including non-equilibrium Green’s function and density-functional-theory (DFT) methods. With automatic script generation these techniques are simple and intuitive to use whether or not you are an expert in quantum chemistry and electronic-structure calculations. Compared with physical experiments, nanoscale modeling is cheap and efficient. Using modeling prior to, or in combination with, practical laboratory work accelerates the development by limiting the time-consuming trial-and-error experimentation. Possible problems can be detected and solved before the device is even fabricated. ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²° [ INSTALLATION ] °²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ Unzip , Unrar , Install. Check instructions NOTE: The binary for VNL (vnl_exec) is in 32bit, so make sure you have 32bit libraries installed on your linux. ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²° [ GROUP iNFO ] °²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ We are not taking any applications. We are an invite only group. ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²° [ GREETINGS ] °²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ Our friends, our loyal members and our fair competitors. You know who you are. ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ °²²° [ RECOiL IN 2009 - ONE MORE IMPACT! ] °²²° ִ ִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִִ ִ 下载链接来自sharevirus 未经过安装测试与安全检测,使用者后果自负与本论坛无关 软体版权归原作者及其公司所有,如果你喜欢,请购买正版

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