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A Study of Non-equilibrium Phase Transitions in Semiconductors

A Study of Non-equilibrium Phase Transitions in Semiconductors PDF Author: Eckehard Scholl
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


A Study of Non-equilibrium Phase Transitions in Semiconductors

A Study of Non-equilibrium Phase Transitions in Semiconductors PDF Author: Eckehard Scholl
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Nonequilibrium Phase Transitions in Semiconductors

Nonequilibrium Phase Transitions in Semiconductors PDF Author: Eckehard Schöll
Publisher: Springer Science & Business Media
ISBN: 3642719279
Category : Science
Languages : en
Pages : 323

Book Description
Semiconductors can exhibit electrical instabilities like current runaway, threshold switching, current filamentation, or oscillations, when they are driven far from thermodynamic equilibrium. This book presents a coherent theoretical des- cription of such cooperative phenomena induced by generation and recombination processes of charge carriers in semicon- ductors.

Recombination induced non-equilibrium phase transitions in semiconductors

Recombination induced non-equilibrium phase transitions in semiconductors PDF Author: Ashok Vithalrao Pimpale
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Nonequilibrium Phase Transitions in Driven Vortex Matter

Nonequilibrium Phase Transitions in Driven Vortex Matter PDF Author: Shun Maegochi
Publisher: Springer Nature
ISBN: 9819729874
Category :
Languages : en
Pages : 109

Book Description


Non-equilibrium Phase Transitions

Non-equilibrium Phase Transitions PDF Author: Malte Henkel
Publisher:
ISBN: 9787519220723
Category : Nonequilibrium statistical mechanics
Languages : en
Pages : 385

Book Description


Non-Equilibrium Dynamics of Semiconductors and Nanostructures

Non-Equilibrium Dynamics of Semiconductors and Nanostructures PDF Author: Kong-Thon Tsen
Publisher: CRC Press
ISBN: 1420027255
Category : Technology & Engineering
Languages : en
Pages : 272

Book Description
The advent of the femto-second laser has enabled us to observe phenomena at the atomic timescale. One area to reap enormous benefits from this ability is ultrafast dynamics. Collecting the works of leading experts from around the globe, Non-Equilibrium Dynamics of Semiconductors and Nanostructures surveys recent developments in a variety of areas in ultrafast dynamics. In eight authoritative chapters illustrated by more than 150 figures, this book spans a broad range of new techniques and advances. It begins with a review of spin dynamics in a high-mobility two-dimensional electron gas, followed by the generation, propagation, and nonlinear properties of high-amplitude, ultrashort strain solitons in solids. The discussion then turns to nonlinear optical properties of nanoscale artificial dielectrics, optical properties of GaN self-assembled quantum dots, and optical studies of carrier dynamics and non-equilibrium optical phonons in nitride-based semiconductors. Rounding out the presentation, the book examines ultrafast non-equilibrium electron dynamics in metal nanoparticles, monochromatic acoustic phonons in GaAs, and electromagnetically induced transparency in semiconductor quantum wells. With its pedagogical approach and practical, up-to-date coverage, Non-Equilibrium Dynamics of Semiconductors and Nanostructures allows you to easily put the material into practice, whether you are a seasoned researcher or new to the field.

Studies of Non-equilibrium Phase Transitions

Studies of Non-equilibrium Phase Transitions PDF Author: Brendan David Hoffman
Publisher:
ISBN:
Category :
Languages : en
Pages : 400

Book Description


Non-equilibrium Phase Transitions

Non-equilibrium Phase Transitions PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Non-equilibrium Phase Transitions

Non-equilibrium Phase Transitions PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 6

Book Description
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project at the Los Alamos National Laboratory (LANL). Non-equilibrium phase transitions play a central role in a very broad range of scientific areas, ranging from nuclear, particle, and astrophysics to condensed matter physics and the material and biological sciences. The aim of this project was to explore the path to a deeper and more fundamental understanding of the common physical principles underlying the complex real time dynamics of phase transitions. The main emphasis was on the development of general theoretical tools to deal with non-equilibrium processes, and of numerical methods robust enough to capture the time-evolving structures that occur in actual experimental situations. Specific applications to Laboratory multidivisional efforts in relativistic heavy-ion physics (transition to a new phase of nuclear matter consisting of a quark-gluon plasma) and layered high-temperature superconductors (critical currents and flux flow at the National High Magnetic Field Laboratory) were undertaken.

Non-equilibrium Phase Transitions in Interacting Diffusions

Non-equilibrium Phase Transitions in Interacting Diffusions PDF Author: Wael Al-Sawai
Publisher:
ISBN:
Category : Phase transformations (Statistical physics)
Languages : en
Pages : 61

Book Description
The theory of thermodynamic phase transitions has played a central role both in theoretical physics and in dynamical systems for several decades. One of its fundamental results is the classification of various physical models into equivalence classes with respect to the scaling behavior of solutions near the critical manifold. From that point of view, systems characterized by the same set of critical exponents are equivalent, regardless of how different the original physical models might be. For non-equilibrium phase transitions, the current theoretical framework is much less developed. In particular, an equivalent classification criterion is not available, thus requiring a specific analysis of each model individually. In this thesis, we propose a potential classification method for time-dependent dynamical systems, namely comparing the possible deformations of the original problem, and identifying dynamical systems which share the same deformation space. The specific model on which this procedure is developed is the Kuramoto model for interacting, disordered oscillators. Studied in the mean-field limit by a variety of methods, its associated synchronization phase transition appears as an appropriate model for cooperative phenomena ranging from coupled Josephson junctions to self-ordering patterns in biological and social systems. We investigate the geometric deformation of the dynamical system into the space of univalent maps of the unit disk, related to the Douady-Earle extension and the Denjoy-Wolff theory, and separately the algebraic deformation into the space of nonlinear sigma models for unitary operators. The results indicate that the Kuramoto model is representative for a large class of non-equilibrium synchronization models, with a rich phase-space diagram.