ab initio Model for Mobility and Seebeck coefficient using Boltzmann Transport (aMoBT) equation

By Alireza Faghaninia1, Joel Ager (editor)2, Cynthia S Lo (editor)1

1. Washington University in St. Louis 2. University of California - Berkeley

ab initio electronic transport model to calculate low-field electrical mobility and Seebeck coefficient of semiconductors in Boltzmann transport framework.

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Version 2.2.4 - published on 27 Jan 2016

doi:10.4231/D3HM52M0S cite this

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Location of all "ab initio Model for Mobility and Seebeck coefficient using Boltzmann Transport (aMoBT) equation" Users Since Its Posting

Simulation Users

501

11 17 39 52 63 79 89 95 104 117 126 139 144 156 163 170 182 196 207 217 232 249 262 278 291 301 310 317 329 332 354 369 380 391 407 418 429 445 459 471 478 486 495 501

Users By Organization Type
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Unidentified 414 (82.63%)
Educational - University 79 (15.77%)
National Lab 4 (0.8%)
Industry 2 (0.4%)
Government Agency 1 (0.2%)
Educational - Pre-College 1 (0.2%)
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us UNITED STATES 23 (32.86%)
in INDIA 22 (31.43%)
cn CHINA 7 (10%)
kr KOREA, REPUBLIC OF 4 (5.71%)
bd BANGLADESH 3 (4.29%)
dz ALGERIA 3 (4.29%)
ru RUSSIAN FEDERATION 2 (2.86%)
tr TURKEY 2 (2.86%)
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Simulation Runs

5,919

104 221 306 358 414 550 676 687 714 742 793 820 838 903 934 965 1022 1086 1159 1220 1316 1551 1696 2035 2135 2203 2260 2327 2463 2519 2773 3093 3391 3515 4062 4596 4937 5122 5244 5398 5723 5747 5804 5919
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Wall Clock Time 2.4 hours 453.06 days
CPU time 3.38 minutes 10.61 days
Interaction Time 50.58 minutes 158.84 days