Semiconductor Laser Dynamics with Opto-electronic Feedback

Semiconductor Laser Dynamics with Opto-electronic Feedback
Author :
Publisher :
Total Pages : 256
Release :
ISBN-10 : OCLC:827780778
ISBN-13 :
Rating : 4/5 (78 Downloads)

Synopsis Semiconductor Laser Dynamics with Opto-electronic Feedback by : Mohamad Haidar Shahine

Semiconductor lasers have been one of the major building blocks of fiber-optics based communication systems. For the past two decades, specifications of these lasers have been tailored to particular applications by defining certain performance parameters that do not necessarily overlap from one application to another. In order to commoditize laser sources by increasing volume and reducing cost, the laser performance parameters needed to be generic and not customized. In this simulation work, we modify and enhance essential performance parameters of a simple, low-cost laser with generic specifications and tailor it to specific applications that normally require advanced and complicated laser structures, by using electronic feedback for instantaneous impairment correction, while at the same time maintain a compact size for the laser and the supporting circuitry around it. We essentially use the same laser chip to cover the three distinct applications being analyzed. Maintaining generic laser chip specifications while only modifying the feedback loop circuit design parameters can facilitate photonic hybrid integration. Specific applications targeted are, linear optical-analog transmission for wireless backhauling by reducing the laser relative intensity noise while maintaining and enhancing transmitter linearity, improving laser modulation response and increasing the laser relaxation-oscillation frequency, another application covers laser linewidth reduction to target long haul transmission and coherent detection and finally an application that requires producing a self-pulsating laser for analog to digital conversion sampling application. The performance for all these application is analyzed in both the time and frequency domains. For the analog-signal laser, a laser RIN reduction of 15 dB was realized in the simulation and experiment. For the linewidth-reduction application, the simulation also shows a reduction of linewidth from 2.4 MHz to 24 Hz can be achieved along with simultaneous reduction of 1/f noise at low frequencies, and carrier effect noise at high frequencies to flatten the laser FM response. As for the pulse-generation application, an analysis on controlling the self-pulsation characteristics of semiconductor DFB laser was performed. A detailed analysis of the noise effects on the jitter performance of this system is also carried out. This work also establishes methods to optimize and control a pulsing DFB-laser system for photonic analog-to-digital conversion application by tuning the laser drive current with the potential to replace mode-locked fiber lasers in many applications from RF photonics to chaos communication and optical signal processing.

Unlocking Dynamical Diversity

Unlocking Dynamical Diversity
Author :
Publisher : John Wiley & Sons
Total Pages : 356
Release :
ISBN-10 : 9780470856208
ISBN-13 : 0470856203
Rating : 4/5 (08 Downloads)

Synopsis Unlocking Dynamical Diversity by : Deborah M. Kane

Applications of semiconductor lasers with optical feedback systems are driving rapid developments in theoretical and experimental research. The very broad wavelength-gain-bandwidth of semiconductor lasers combined with frequency-filtered, strong optical feedback create the tunable, single frequency laser systems utilised in telecommunications, environmental sensing, measurement and control. Those with weak to moderate optical feedback lead to the chaotic semiconductor lasers of private communication. This resource illustrates the diversity of dynamic laser states and the technological applications thereof, presenting a timely synthesis of current findings, and providing the roadmap for exploiting their future potential. * Provides theory-based explanations underpinned by a vast range of experimental studies on optical feedback, including conventional, phase conjugate and frequency- filtered feedback in standard, commercial and single-stripe semiconductor lasers * Includes the classic Lang-Kobayashi equation model, through to more recent theory, with new developments in techniques for solving delay differential equations and bifurcation analysis * Explores developments in self-mixing interferometry to produce sub-nanometre sensitivity in path-length measurements * Reviews tunable single frequency semiconductor lasers and systems and their diverse range of applications in sensing and optical communications * Emphasises the importance of synchronised chaotic semiconductor lasers using optical feedback and private communications systems Unlocking Dynamical Diversity illustrates all theory using real world examples gleaned from international cutting-edge research. Such an approach appeals to industry professionals working in semiconductor lasers, laser physics and laser applications and is essential reading for researchers and postgraduates in these fields.

Digital Communications Using Chaos and Nonlinear Dynamics

Digital Communications Using Chaos and Nonlinear Dynamics
Author :
Publisher : Springer Science & Business Media
Total Pages : 392
Release :
ISBN-10 : 9780387297880
ISBN-13 : 038729788X
Rating : 4/5 (80 Downloads)

Synopsis Digital Communications Using Chaos and Nonlinear Dynamics by : Jia-Ming Liu

This book provides a summary of the research conducted at UCLA, Stanford University, and UCSD over the last ?ve years in the area of nonlinear dyn- ics and chaos as applied to digital communications. At ?rst blush, the term “chaotic communications” seems like an oxymoron; how could something as precise and deterministic as digital communications be chaotic? But as this book will demonstrate, the application of chaos and nonlinear dynamicstocommunicationsprovidesmanypromisingnewdirectionsinareas of coding, nonlinear optical communications, and ultra-wideband commu- cations. The eleven chapters of the book summarize many of the promising new approaches that have been developed, and point the way to new research directions in this ?eld. Digital communications techniques have been continuously developed and re?ned for the past ?fty years to the point where today they form the heart of a multi-hundred billion dollar per year industry employing hundreds of thousands of people on a worldwide basis. There is a continuing need for transmission and reception of digital signals at higher and higher data rates. There are a variety of physical limits that place an upper limit on these data rates, and so the question naturally arises: are there alternative communi- tion techniques that can overcome some of these limitations? Most digital communications today is carried out using electronic devices that are essentially “linear,” and linear system theory has been used to c- tinually re?ne their performance. In many cases, inherently nonlinear devices are linearized in order to achieve a certain level of linear system performance.

Semiconductor Lasers

Semiconductor Lasers
Author :
Publisher : Springer
Total Pages : 679
Release :
ISBN-10 : 9783319561387
ISBN-13 : 3319561383
Rating : 4/5 (87 Downloads)

Synopsis Semiconductor Lasers by : Junji Ohtsubo

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.

Passively Mode-Locked Semiconductor Lasers

Passively Mode-Locked Semiconductor Lasers
Author :
Publisher : Springer
Total Pages : 206
Release :
ISBN-10 : 9783319588742
ISBN-13 : 3319588745
Rating : 4/5 (42 Downloads)

Synopsis Passively Mode-Locked Semiconductor Lasers by : Lina Jaurigue

This thesis investigates the dynamics of passively mode-locked semiconductor lasers, with a focus on the influence of optical feedback on the noise characteristics. The results presented here are important for improving the performance of passively mode-locked semiconductor lasers and, at the same time, are relevant for understanding delay-systems in general. The semi-analytic results developed are applicable to a broad range of oscillatory systems with time-delayed feedback, making the thesis of relevance to various scientific communities. Passively mode-locked lasers can produce pulse trains and have applications in the contexts of optical clocking, microscopy and optical data communication, among others. Using a system of delay differential equations to model these devices, a combination of numerical and semi-analytic methods is developed and used to characterize this system.

Dynamics of Quantum Dot Lasers

Dynamics of Quantum Dot Lasers
Author :
Publisher : Springer Science & Business Media
Total Pages : 301
Release :
ISBN-10 : 9783319037868
ISBN-13 : 3319037862
Rating : 4/5 (68 Downloads)

Synopsis Dynamics of Quantum Dot Lasers by : Christian Otto

This thesis deals with the dynamics of state-of-the-art nanophotonic semiconductor structures, providing essential information on fundamental aspects of nonlinear dynamical systems on the one hand, and technological applications in modern telecommunication on the other. Three different complex laser structures are considered in detail: (i) a quantum-dot-based semiconductor laser under optical injection from a master laser, (ii) a quantum-dot laser with optical feedback from an external resonator, and (iii) a passively mode-locked quantum-well semiconductor laser with saturable absorber under optical feedback from an external resonator. Using a broad spectrum of methods, both numerical and analytical, this work achieves new fundamental insights into the interplay of microscopically based nonlinear laser dynamics and optical perturbations by delayed feedback and injection.

Nonlinear Laser Dynamics

Nonlinear Laser Dynamics
Author :
Publisher : John Wiley & Sons
Total Pages : 412
Release :
ISBN-10 : 9783527639830
ISBN-13 : 3527639837
Rating : 4/5 (30 Downloads)

Synopsis Nonlinear Laser Dynamics by : Kathy Lüdge

A distinctive discussion of the nonlinear dynamical phenomena of semiconductor lasers. The book combines recent results of quantum dot laser modeling with mathematical details and an analytic understanding of nonlinear phenomena in semiconductor lasers and points out possible applications of lasers in cryptography and chaos control. This interdisciplinary approach makes it a unique and powerful source of knowledge for anyone intending to contribute to this field of research. By presenting both experimental and theoretical results, the distinguished authors consider solitary lasers with nano-structured material, as well as integrated devices with complex feedback sections. In so doing, they address such topics as the bifurcation theory of systems with time delay, analysis of chaotic dynamics, and the modeling of quantum transport. They also address chaos-based cryptography as an example of the technical application of highly nonlinear laser systems.

Synergetics

Synergetics
Author :
Publisher : Springer Science & Business Media
Total Pages : 325
Release :
ISBN-10 : 9783642963636
ISBN-13 : 3642963633
Rating : 4/5 (36 Downloads)

Synopsis Synergetics by : Hermann Haken

The spontaneous formation of well organized structures out of germs or even out of chaos is one of the most fascinating phenomena and most challenging problems scientists are confronted with. Such phenomena are an experience of our daily life when we observe the growth of plants and animals. Thinking of much larger time scales, scientists are led into the problems of evolution, and, ultimately, of the origin of living matter. When we try to explain or understand in some sense these extremely complex biological phenomena it is a natural question, whether pro cesses of self-organization may be found in much simpler systems of the un animated world. In recent years it has become more and more evident that there exist numerous examples in physical and chemical systems where well organized spatial, temporal, or spatio-temporal structures arise out of chaotic states. Furthermore, as in living of these systems can be maintained only by a flux of organisms, the functioning energy (and matter) through them. In contrast to man-made machines, which are to exhibit special structures and functionings, these structures develop spon devised It came as a surprise to many scientists that taneously-they are self-organizing. numerous such systems show striking similarities in their behavior when passing from the disordered to the ordered state. This strongly indicates that the function of such systems obeys the same basic principles. In our book we wish to explain ing such basic principles and underlying conceptions and to present the mathematical tools to cope with them.