Spatio Temporal Dynamics and Quantum Fluctuations in Semiconductor Lasers

Spatio Temporal Dynamics and Quantum Fluctuations in Semiconductor Lasers
Author: Edeltraud Gehrig,Ortwin Hess
Publsiher: Springer Science & Business Media
Total Pages: 252
Release: 2003-09-22
Genre: Technology & Engineering
ISBN: 3540007415

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Presents fundamental theories and simulations of the spatio-temporal dynamics and quantum fluctuations in semiconductor lasers. The dynamic interplay of light and matter is theoretically described by taking into account microscopic carrier dynamics, spatially dependent light-field propagation and the influence of spontaneous emission and noise.

Spatio temporal Dynamics of Semiconductor Lasers

Spatio temporal Dynamics of Semiconductor Lasers
Author: Ortwin Hess
Publsiher: Unknown
Total Pages: 189
Release: 1993
Genre: Semiconductor lasers
ISBN: 3928943014

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The spatio-temporal dynamics of multi-stripe and broad-area semiconductor laser arrays are studied theoretically. A hierarchy of microscopic and phenomenological model equations, which describe the interaction between the optical field and the active semiconductor medium, are formulated.

Spatio temporal Dynamics of Semiconductor Lasers

Spatio temporal Dynamics of Semiconductor Lasers
Author: Ortwin Hess
Publsiher: Unknown
Total Pages: 95
Release: 1996
Genre: Semiconductor lasers
ISBN: OCLC:35328438

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Spatio Temporal Modeling and Device Optimization of Passively Mode Locked Semiconductor Lasers

Spatio Temporal Modeling and Device Optimization of Passively Mode Locked Semiconductor Lasers
Author: Stefan Meinecke
Publsiher: Springer Nature
Total Pages: 264
Release: 2022-03-26
Genre: Technology & Engineering
ISBN: 9783030962487

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This thesis investigates passively mode-locked semiconductor lasers by numerical methods. The understanding and optimization of such devices is crucial to the advancement of technologies such as optical data communication and dual comb spectroscopy. The focus of the thesis is therefore on the development of efficient numerical models, which are able both to perform larger parameter studies and to provide quantitative predictions. Along with that, visualization and evaluation techniques for the rich spatio-temporal laser dynamics are developed; these facilitate the physical interpretation of the observed features. The investigations in this thesis revolve around two specific semiconductor devices, namely a monolithically integrated three-section tapered quantum-dot laser and a V-shaped external cavity laser. In both cases, the simulations closely tie in with experimental results, which have been obtained in collaboration with the TU Darmstadt and the ETH Zurich. Based on the successful numerical reproduction of the experimental findings, the emission dynamics of both lasers can be understood in terms of the cavity geometry and the active medium dynamics. The latter, in particular, highlights the value of the developed simulation tools, since the fast charge-carrier dynamics are generally not experimentally accessible during mode-locking operation. Lastly, the numerical models are used to perform laser design explorations and thus to derive recommendations for further optimizations.

Analysis of Spatio Temporal Phenomena in High Brightness Diode Lasers using Numerical Simulations

Analysis of Spatio Temporal Phenomena in High Brightness Diode Lasers using Numerical Simulations
Author: Anissa Zeghuzi
Publsiher: Cuvillier Verlag
Total Pages: 176
Release: 2020-10-22
Genre: Science
ISBN: 9783736962897

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Broad-area lasers are edge-emitting semiconductor lasers with a wide lateral emission aperture. This feature enables high output powers but also diminishes the lateral beam quality and results in their inherently non-stationary behavior. Research in the area is driven by application, and the main objective is to increase the brightness, which includes both output power and lateral beam quality. To understand the underlying spatio-temporal phenomena and to apply this knowledge in order to reduce costs for brightness optimization, a self-consistent simulation tool taking all essential processes into account is vital. Firstly, in this work a quasi-three-dimensional opto-electronic and thermal model is presented that describes essential qualitative characteristics of real devices well. Time-dependent traveling-wave equations are utilized to characterize the inherently non-stationary optical fields, which are coupled to dynamic rate equations for the excess carriers in the active region. This model is extended by an injection-current-density model to accurately include lateral current spreading and spatial hole burning. Furthermore, a temperature model is presented that includes short-time local heating near the active region as well as the formation of a stationary temperature profile. Secondly, the reasons of brightness degradation, i.e. the origins of power saturation and the spatially modulated field profile, are investigated. And lastly, designs that mitigate those effects limiting the lateral brightness under pulsed and continuous-wave operation are discussed. Amongst those designs a novel “chessboard laser” is presented that utilizes longitudinal-lateral gain-loss modulation and an additional phase tailoring to obtain a very low far-field divergence.

Semiconductor Lasers

Semiconductor Lasers
Author: Junji Ohtsubo
Publsiher: Springer
Total Pages: 679
Release: 2017-05-03
Genre: Science
ISBN: 9783319561387

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This book describes the fascinating recent advances made concerning the chaos, stability and instability of semiconductor lasers, and discusses their applications and future prospects in detail. It emphasizes the dynamics in semiconductor lasers by optical and electronic feedback, optical injection, and injection current modulation. Applications of semiconductor laser chaos, control and noise, and semiconductor lasers are also demonstrated. Semiconductor lasers with new structures, such as vertical-cavity surface-emitting lasers and broad-area semiconductor lasers, are intriguing and promising devices. Current topics include fast physical number generation using chaotic semiconductor lasers for secure communication, development of chaos, quantum-dot semiconductor lasers and quantum-cascade semiconductor lasers, and vertical-cavity surface-emitting lasers. This fourth edition has been significantly expanded to reflect the latest developments. The fundamental theory of laser chaos and the chaotic dynamics in semiconductor lasers are discussed, but also for example the method of self-mixing interferometry in quantum-cascade lasers, which is indispensable in practical applications. Further, this edition covers chaos synchronization between two lasers and the application to secure optical communications. Another new topic is the consistency and synchronization property of many coupled semiconductor lasers in connection with the analogy of the dynamics between synaptic neurons and chaotic semiconductor lasers, which are compatible nonlinear dynamic elements. In particular, zero-lag synchronization between distant neurons plays a crucial role for information processing in the brain. Lastly, the book presents an application of the consistency and synchronization property in chaotic semiconductor lasers, namely a type of neuro-inspired information processing referred to as reservoir computing.

Handbook of Optoelectronic Device Modeling and Simulation

Handbook of Optoelectronic Device Modeling and Simulation
Author: Joachim Piprek
Publsiher: CRC Press
Total Pages: 887
Release: 2017-10-12
Genre: Science
ISBN: 9781498749572

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Provides a comprehensive survey of fundamental concepts and methods for optoelectronic device modeling and simulation. Gives a broad overview of concepts with concise explanations illustrated by real results. Compares different levels of modeling, from simple analytical models to complex numerical models. Discusses practical methods of model validation. Includes an overview of numerical techniques.

Handbook of Chaos Control

Handbook of Chaos Control
Author: Eckehard Schöll,Heinz Georg Schuster
Publsiher: John Wiley & Sons
Total Pages: 849
Release: 2008-09-08
Genre: Science
ISBN: 9783527622320

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This long-awaited revised second edition of the standard reference on the subject has been considerably expanded to include such recent developments as novel control schemes, control of chaotic space-time patterns, control of noisy nonlinear systems, and communication with chaos, as well as promising new directions in research. The contributions from leading international scientists active in the field provide a comprehensive overview of our current level of knowledge on chaos control and its applications in physics, chemistry, biology, medicine, and engineering. In addition, they show the overlap with the traditional field of control theory in the engineering community. An interdisciplinary approach of interest to scientists and engineers working in a number of areas.