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Contributors: View

Dragica Vasileska

Contributor picture

Contributions 29
Affiliation Arizona State University
Web Site http://www.eas.asu.edu/~vasilesk/
Biography Dragica Vasileska received the B.S.E.E. (Diploma) and the M.S.E.E. Degree form the University Sts. Cyril and Methodius (Skopje, Republic of Macedonia) in 1985 and 1992, respectively, and a Ph.D. Degree from Arizona State University in 1995. From 1995 until 1997 she held a Faculty Research Associate position within the Center of Solid State Electronics Research at Arizona State University. In the fall of 1997 she joined the faculty of Electrical Engineering at Arizona State University. In 2002 she was promoted to Associate Professor. Her research interests include semiconductor device physics and semiconductor device modeling, with strong emphasis on quantum transport and Monte Carlo particle-based simulations. She is a member of IEEE and APS. Dr. Vasileska has published more than 100 journal publications, over 80 conference proceedings refereed papers, has given numerous invited talks and is a co-author on a book on Computational Electronics with Prof. S. M. Goodnick. She has many awards including the best student award from the School of Electrical Engineering in Skopje since its existence (1985, 1990). She is also a recipient of the 1998 NSF CAREER Award. Her students have won the best paper and the best poster award at the LDSD conference in Cancun, 2004.

Contributions

  1. Choice of the Distribution Function

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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Solid-State Theory and Semiconductor Transport Fundamentals

  2. Computational Electronics

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    Users: 744
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    05 Jun. 2006 | Courses | Contributor(s): Dragica Vasileska

    Scaling of CMOS devices into the nanometer regime leads to increased processing cost. In this regard, the field of Computational Electronics is becoming more and more important because device simulation offers unique possibility to test hypothetical devices which have not been fabricated yet and it …

  3. Drift-Diffusion Model, Mobility Modeling

    This resource has a 7.5 Ranking

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    12 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Drift-Diffusion Model

  4. Drift-Diffusion Model, Part A: Introduction

    This resource has a 7.9 Ranking

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    07 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Drift-Diffusion Model

  5. Drift-Diffusion Model, Part B: Solution Details

    This resource has a 7.3 Ranking

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    09 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Drift-Diffusion Model

  6. Drift-Diffusion Model, Part C: Sharfetter-Gummel, Time-Dependent Simulations

    This resource has a 7.0 Ranking

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    12 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Drift-Diffusion Model

  7. Empirical Pseudopotential Method Description

    This resource has a 8.5 Ranking

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    Last 12 Months: updated 01 May, 2008
    Users: 107
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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Solid-State Theory and Semiconductor Transport Fundamentals

  8. Ensemble Monte Carlo Method Described

    This resource has a 5.3 Ranking

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    28 Apr. 2008 | Teaching Materials | Contributor(s): Dragica Vasileska, Gerhard Klimeck, Mark Lundstrom, David K. Ferry

    In this presentation we give an overview of the implementation details of the Ensemble Monte Carlo method for mobility and drift velocity calculation in arbitrary materials and arbitrary crystalographic orientations.NSF-Career, ONR

  9. Examples for QuaMC 2D particle-based device Simulator Tool

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    12 May. 2008 | Online Presentations | Contributor(s): Dragica Vasileska, Shaikh S. Ahmed, Gerhard Klimeck

    We provide three examples that demonstrate the full capabilities of QuaMC 2D for alternative device technologies.

  10. Introduction to Computational Electronics

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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    What Is Computational Electronics and Why Do We Need It?

  11. Introduction to DD Modeling with PADRE

    This resource has a 8.6 Ranking

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    12 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Silvaco/PADRE Description and Application to Device Simulation

  12. Introduction to Silvaco Simulation Software

    This resource has a 8.2 Ranking

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    26 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Silvaco/PADRE Description and Application to Device Simulation

  13. Modeling Coulomb Effects in Nanoscale Devices

    This resource has a 9.9 Ranking

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    28 Apr. 2008 | Online Presentations | Contributor(s): Dragica Vasileska, Shaikh S. Ahmed, David K. Ferry

    We describe the development of the modeling efforts focused towards proper description of the threshold voltage fluctuations due to the discrete impurity effects (different number and different distribution of the impurities from device to device on the same chip).NSF, ONRW. J. Gross, D. Vasileska …

  14. Modeling Single and Dual-Gate Capacitors using SCHRED

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    31 Mar. 2006 | Learning Modules | Contributor(s): Dragica Vasileska

    SCHRED stands for self-consistent solver of the 1D Poisson and 1D effective mass Schrodinger equation as applied to modeling single gate or dual-gate capacitors. The program incorporates many features such as choice of degenerate and non-degenerate statistics for semiclassical charge description, …

  15. MOS Capacitors: Description and Semiclassical Simulation With PADRE

    This resource has a 7.3 Ranking

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    26 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Introduction of Quantum-Mechanical Effects in Device Simulation

  16. MOSCap

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    Jobs: 3506
    Avg. exec. time: 4 secs
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    06 Apr. 2006 | Tools | Contributor(s): Akira Matsudaira, Shaikh S. Ahmed, Gerhard Klimeck, Dragica Vasileska

    Simulates the capacitance of bulk and dual gate capacitors for a variety of

  17. MOSFET

    This resource has a 7.5 Ranking

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    Avg. exec. time: 6 mins
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    30 Mar. 2006 | Tools | Contributor(s): Matteo Mannino, Shaikh S. Ahmed, Gerhard Klimeck, Dragica Vasileska, Xufeng Wang, Himadri Pal

    Simulates the current-voltage characteristics for bulk and SOI Field Effect Transistors (FETs)

  18. Numerical Analysis

    This resource has a 8.8 Ranking

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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Numerical Analysis

  19. Particle-Based Device Simulators Description

    This resource has a 4.8 Ranking

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    28 Apr. 2008 | Online Presentations | Contributor(s): Dragica Vasileska, Shaikh S. Ahmed, Gerhard Klimeck

    In this presentation we give an overview of partcle-based device simulations with focus on implementation details.

  20. PN Junction Lab

    This resource has a 8.5 Ranking

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    Users: 625
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    Avg. exec. time: 17 secs
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    12 Sep. 2005 | Tools | Contributor(s): Matteo Mannino, Dragica Vasileska, Michael McLennan, Xufeng Wang, Gerhard Klimeck

    Explore P-N junction devices - band diagrams, charge distributions, I/V characteristics, etc.

  21. PN Junction Theory and Modeling

    This resource has a 7.7 Ranking

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    14 Sep. 2005 | Learning Modules | Contributor(s): Dragica Vasileska

    Learn the basics of PN junction theory. Analyze step junctions and linearly-graded junctions both analytically and numerically. See how the depletion region gives rise to a built-in voltage, and also affects the capacitance under AC analysis. Study DC current-voltage characteristics, including …

  22. QuaMC 2D Lab

    This resource has a 8.4 Ranking

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    Users: 183
    Jobs: 3474
    Avg. exec. time: 38 mins
    Reviews & Citations
    Google/IEEE: updated 30 Nov, 2007
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    1 citation

    23 Feb. 2007 | Tools | Contributor(s): Shaikh S. Ahmed, Dragica Vasileska

    Quantum-corrected Monte-Carlo simulator for MOSFET devices

  23. Relaxation-Time Approximation

    This resource has a 7.0 Ranking

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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Solid-State Theory and Semiconductor Transport Fundamentals

  24. Scattering Mechanisms

    This resource has a 7.0 Ranking

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    05 Jun. 2006 | Online Presentations | Contributor(s): Dragica Vasileska

    Solid-State Theory and Semiconductor Transport Fundamentals

  25. Schred

    This resource has a 9.9 Ranking

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    Users: 532
    Jobs: 10412
    Avg. exec. time: 48 secs
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    Google/IEEE: updated 25 Apr, 2008
    Avg. Review: 5.0 out of 5 stars
    Citations: 74

    4 reviews (Review this)

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    09 Feb. 2006 | Tools | Contributor(s): Dragica Vasileska, Shaikh S. Ahmed, Matteo Mannino, Akira Matsudaira, Gerhard Klimeck

    Solves Schrodinger/Poisson equations for a 1D quantum well, as you might have MOSFET, SOS, or SOI structure.