NEMO5 Tutorial 3: Models

By Jean Michel D Sellier

Purdue University

Published on

Abstract

This tutorial presents the models implemented in NEMO5. A description on how the solvers interact with each other is reported along with the options of the various solvers. An example on how to make a simulation that involves strain calculations, Schroedinger wave functions calculations and an applied external potential is presented.

Bio

Jean Michel D. Sellier is a Research Assistant Professor at Purdue University. He is one of the core developer of NEMO5.

Cite this work

Researchers should cite this work as follows:

  • Jean Michel D Sellier (2012), "NEMO5 Tutorial 3: Models," https://nanohub.org/resources/14703.

    BibTex | EndNote

Time

Location

Burton Morgan 121, Purdue University, West Lafayette, IN

Tags

NEMO5 Tutorial 3: Models
  • Tutorial 3: NEMO5 Models 1. Tutorial 3: NEMO5 Models 0
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  • A short introduction 2. A short introduction 8.6666666666666661
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  • A short introduction 3. A short introduction 11.566666666666666
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  • …in this tutorial 4. …in this tutorial 43.733333333333334
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  • …in this tutorial 5. …in this tutorial 45.533333333333331
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  • …in this tutorial 6. …in this tutorial 60.666666666666664
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  • …in this tutorial 7. …in this tutorial 87.966666666666669
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  • …in this tutorial 8. …in this tutorial 110.56666666666666
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  • …in this tutorial 9. …in this tutorial 120.26666666666667
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  • Why an Atomistic approach? 10. Why an Atomistic approach? 124.86666666666666
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  • Why an atomistic approach? 11. Why an atomistic approach? 127.46666666666667
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  • Why an atomistic approach? 12. Why an atomistic approach? 162.93333333333334
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  • Multi-scale and Multi-Physics approaches 13. Multi-scale and Multi-Physics … 193.46666666666667
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  • Multi-scale and Multi-Physics approaches 14. Multi-scale and Multi-Physics … 207.93333333333334
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  • Multi-scale and Multi-Physics approaches 15. Multi-scale and Multi-Physics … 286.06666666666666
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  • Multi-scale and Multi-Physics approaches 16. Multi-scale and Multi-Physics … 293.9
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  • Multi-scale and Multi-Physics approaches 17. Multi-scale and Multi-Physics … 345.46666666666664
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  • What are the models implemented in NEMO5? 18. What are the models implemente… 385.3
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  • What are the models implemented in NEMO5? 19. What are the models implemente… 390
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  • What are the models implemented in NEMO5? 20. What are the models implemente… 402.56666666666666
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  • What are the models implemented in NEMO5? 21. What are the models implemente… 563.4
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  • What are the models implemented in NEMO5? 22. What are the models implemente… 577.76666666666665
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  • What are the models implemented in NEMO5? 23. What are the models implemente… 584.0333333333333
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  • What are the models implemented in NEMO5? 24. What are the models implemente… 588.56666666666672
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  • What are the models implemented in NEMO5? 25. What are the models implemente… 594.16666666666663
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  • What are the models implemented in NEMO5? 26. What are the models implemente… 598.2
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  • Strain Models 27. Strain Models 600.8
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  • Strain Models 28. Strain Models 647
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  • Stranski-Krastanow Growth 29. Stranski-Krastanow Growth 660.9
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  • Strain Models 30. Strain Models 738.06666666666672
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  • Strain Models 31. Strain Models 803.6
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  • Strain Models 32. Strain Models 845.9
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  • Strain Models 33. Strain Models 886.3
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  • Electronic Structure 34. Electronic Structure 908.23333333333335
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  • Electronic Structure 35. Electronic Structure 909.1
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  • Electronic Structure 36. Electronic Structure 911.6
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  • Tight-Binding Method 37. Tight-Binding Method 1011.8
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  • A few words on passivation 38. A few words on passivation 1028.2666666666667
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  • Strain Solver Options 39. Strain Solver Options 1074.7666666666667
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  • Strain Solver Options 40. Strain Solver Options 1206.4666666666667
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  • Strain Solver Options 41. Strain Solver Options 1323.7666666666667
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  • Strain Solver Options 42. Strain Solver Options 1493.5666666666666
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  • Strain Solver Options 43. Strain Solver Options 1509.9
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  • Example: 1Dhetero 44. Example: 1Dhetero 1563.5666666666666
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  • Poisson Solver Options 45. Poisson Solver Options 1565.5666666666666
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  • Poisson Solver Options 46. Poisson Solver Options 1705.7333333333334
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  • Poisson Solver Options 47. Poisson Solver Options 1746.9333333333334
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  • Poisson Solver Options 48. Poisson Solver Options 1846.6
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  • Poisson Solver Options 49. Poisson Solver Options 1923.2
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  • Poisson Solver Options 50. Poisson Solver Options 1955.5333333333333
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  • Poisson Solver Options 51. Poisson Solver Options 1962.6
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  • Poisson Solver Options 52. Poisson Solver Options 1980.1666666666667
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  • Poisson Solver Options 53. Poisson Solver Options 2023.7666666666667
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  • Poisson Solver Options 54. Poisson Solver Options 2040.7666666666667
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  • Poisson Solver Options 55. Poisson Solver Options 2054.0666666666666
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  • Poisson Solver Options 56. Poisson Solver Options 2095.0666666666666
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  • Poisson Solver Options 57. Poisson Solver Options 2099
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  • Schroedinger Solver Options 58. Schroedinger Solver Options 2105.0666666666666
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  • Schroedinger Solver Options 59. Schroedinger Solver Options 2395.3333333333335
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  • Schroedinger Solver Options 60. Schroedinger Solver Options 2681.2333333333331
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  • Schroedinger Solver Options 61. Schroedinger Solver Options 2783.2
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  • Schroedinger Solver Options 62. Schroedinger Solver Options 2795.7666666666669
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  • Schroedinger Solver Options 63. Schroedinger Solver Options 2880.3
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  • Schroedinger Solver Options 64. Schroedinger Solver Options 2933.3
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  • Schroedinger Solver Options 65. Schroedinger Solver Options 2988.3
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  • Schroedinger Solver Options 66. Schroedinger Solver Options 3033.5666666666666
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  • Transport 67. Transport 3034.6333333333332
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  • Transport 68. Transport 3036.6
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  • Transport 69. Transport 3093.5
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  • Transport 70. Transport 3107.6
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  • Example: RTDNEGF 71. Example: RTDNEGF 3164.7333333333331
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  • Transport 72. Transport 3191.4666666666667
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  • Semi-classical Solver Options 73. Semi-classical Solver Options 3282.6333333333332
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