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Monte Carlo methods are a class of computational algorithms that rely on repeated random sampling to compute their results. Monte Carlo methods are often used in simulating physical and mathematical systems. Because of their reliance on repeated computation of random or pseudo-random numbers, these methods are most suited to calculation by a computer and tend to be used when it is unfeasible or impossible to compute an exact result with a deterministic algorithm.
Learn more about quantum dots from the many resources on this site, listed below. More information on Monte Carlo method can be found here.
Exciton Dynamics Simulator
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31 Dec 2012 | Tools | Contributor(s): Michael Heiber
Simulates the exciton dynamics in organic photovolatic devices
ECE 695A Lecture 14a: Voltage Dependent HCI I
18 Feb 2013 | Online Presentations | Contributor(s): Muhammad Alam
Outline: Background and Empirical Observations Theory of Hot Carriers: Hydrodynamic Model Theory of Hot Carriers: Monte Carlo Model Theory of Hot Carriers: Universal Scaling Conclusion …
ECE 695A Lecture 14b: Voltage Dependent HCI II
[Illinois] CSE Seminar Series: Advances in First-principles Computational Materials Science
20 Nov 2012 | Online Presentations | Contributor(s): Elif Ertekin
Title: Advances in first-principles computational materials science Subtitle: Things we can calculate now, that we couldn't when I was in grad school. The capability to rationally design new …
Particle Simulations of Ion Generation and Transport in Microelectromechanical Systems and Micropropulsion
29 May 2012 | Online Presentations | Contributor(s): Venkattraman Ayyaswamy
The first part of the talk deals with use of the PIC method with Monte Carlo collisions (MCC) between electrons and the ambient neutral gas to develop models to predict charge accumulation, breakdown …
ECE 656 Lecture 41: Transport in a Nutshell
20 Dec 2011 | Online Presentations | Contributor(s): Mark Lundstrom
ECE 656 Lecture 34a: Monte Carlo Simulation I
Outline Introduction Review of carrier scattering Simulating carrier trajectories Free flight Collision Update after collision Putting it all together Summary
ECE 656 Lecture 34b: Monte Carlo Simulation II
ECE 656 Lecture 32: Balance Equation Approach III
Outline: Review of L31 Carrier temperature and heat flux Heterostructures Summary
Full version as a Word document: (file:MSE_550_Polymer_Modeler_Report.docx not found) Presentation for MSE 550: (file:MSE_550_Polymer_Modeler_Presentation.pptx not found) Abstract The use of …
PROFESSIONAL SKETCH PROF. DIERK RAABE Department of Microstructure Physics and Alloy Design Max-Planck-Institut fuer Eisenforschung Fax: ++49 –(0)211-6792-278 E-mail: email@example.com …
Discussion about Ion Channels Using Reduced Model Approaches
20 Sep 2011 | Online Presentations | Contributor(s): James Fonseca
The seminar will cover the reasons how the channels are able to selectively permit the flow of certain species of ions while blocking other physiological cations.
Test for Monte Carlo Learning Module
29 Jul 2011 | Teaching Materials | Contributor(s): Dragica Vasileska, Gerhard Klimeck
this is a test for the MC Learning Module.
I am interested in applying computational materials science tools to practicle issues in ferrous metallurgy in order to advance our understanding and applications of steels. My educational …
Single Particle and Ensemble Monte Carlo Method
28 Jun 2011 | Teaching Materials | Contributor(s): Dragica Vasileska
This set of handwritten notes is part of the Semiconductor Transport class.
How to do 3D quantum monte carlo in Silvaco Atlas
Closed | Responses: 0
I am trying to simulation LER, RDF, variation of Fin height and fin thickness of tri-gate FINFET. I have access to Silvaco atlas. Do anybody has experience on 3D monter carlo in Silvac Atlas. I need …
Manual for the Generalized Bulk Monte Carlo Tool
23 Jun 2011 | Teaching Materials | Contributor(s): Raghuraj Hathwar, Dragica Vasileska
This manual describes the physics implemented behind the generalized bulk Monte Carlo tool.
Generalized Monte Carlo Presentation
17 Jun 2011 | Teaching Materials | Contributor(s): Dragica Vasileska
This presentation goes along with the Bulk Monte Carlo tool on the nanoHUB that calculates transients and steady-state velocity-field characteristics of arbitrary materials such as Si, Ge, GaAs, GaN, …
High Field Transport and the Monte Carlo Method for the Solution of the Boltzmann Transport Equation
21 Jul 2010 | Teaching Materials | Contributor(s): Dragica Vasileska
This set of slides first describes the path-integral solution of the BTE and then discusses in details the Monte Carlo Method for the Solution of the Boltzmann Transport Equation.
Atomistic Simulations of Reliability
01 Jul 2010 | Teaching Materials | Contributor(s): Dragica Vasileska
Discrete impurity effects in terms of their statistical variations in number and position in the inversion and depletion region of a MOSFET, as the gate length is aggressively scaled, have recently …
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