Short Pulse Generation with Semiconductor Lasers: Device modeling and pulse characterization of gain switched semiconductor lasers

 
9783659202308: Short Pulse Generation with Semiconductor Lasers: Device modeling and pulse characterization of gain switched semiconductor lasers

Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser.

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About the Author:

Antonio Consoli received his Ph. D. degree from the Universidad Politécnica de Madrid, Madrid, Spain, in 2011. His research interests are semiconductor laser dynamics, short pulse generation and device modeling. He is a member of the Optical Society of America (OSA) and of the Institute of Electrical and Electronics Engineers (IEEE).

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Consoli, Antonio
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Book Description Book Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Device modeling and pulse characterization of gain switched semiconductor lasers | Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser. | Format: Paperback | Language/Sprache: english | 250 gr | 220x150x9 mm | 176 pp. Bookseller Inventory # K9783659202308

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Antonio Consoli
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Book Description LAP Lambert Academic Publishing Okt 2013, 2013. Taschenbuch. Book Condition: Neu. Neuware - Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser. 176 pp. Englisch. Bookseller Inventory # 9783659202308

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Book Description LAP Lambert Academic Publishing Okt 2013, 2013. Taschenbuch. Book Condition: Neu. Neuware - Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser. 176 pp. Englisch. Bookseller Inventory # 9783659202308

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Book Description LAP Lambert Academic Publishing Okt 2013, 2013. Taschenbuch. Book Condition: Neu. This item is printed on demand - Print on Demand Neuware - Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser. 176 pp. Englisch. Bookseller Inventory # 9783659202308

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Book Description LAP Lambert Academic Publishing, 2013. Paperback. Book Condition: New. Language: English . Brand New Book. Picosecond dynamic processes of semiconductor lasers allow the generation of short optical pulses which find applications in a rich variety of relevant technological fields. In this book, a simple analysis of the semiconductor laser dynamics, based on the well known rate equation model, is reviewed. A particular device is considered for modeling and experiments: the 1550 nm Vertical Cavity Surface Emitting Laser (VCSEL). Recent original results obtained with these devices are presented. Attention is given to the characterization of the devices and to the analysis of the pulses generated with the Gain Switching technique. Pulse duration, amplitude and jitter are studied as a function of the Gain Switching parameters. The effect of external optical injection on the pulse jitter reduction is presented and an Optical Code Division Multiple Access encoder, based on the obtained pulse train, is described. Additionally, a novel technique for the measurement of the pulse frequency chirp is presented and applied to the calculation of the linewidth enhancement factor of the laser. Bookseller Inventory # KNV9783659202308

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