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Quantum dot lasers on silicon = nonl...
~
Dong, Bozhang.
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Quantum dot lasers on silicon = nonlinear properties, dynamics, and applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Quantum dot lasers on silicon/ by Bozhang Dong.
Reminder of title:
nonlinear properties, dynamics, and applications /
Author:
Dong, Bozhang.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xx, 189 p. :ill. (chiefly col.), digital ;24 cm.
Notes:
"Doctoral thesis accepted by Institut Polytechnique de Paris, Paris, France."
[NT 15003449]:
Physics and Properties of Quantum-dot Lasers -- Dynamics of Quantum-Dot Lasers Subject To External Optical Feedback -- Quantum-Dot Distributed Feedback Laser With Large Optical Mismatch -- Design And Optimization Of Quantum-Dot Optical Frequency Comb On Silicon -- Nonlinear Frequency Conversion In Epitaxial Quantum-Dot Laser On Silicon -- Conclusions And Perspectives.
Contained By:
Springer Nature eBook
Subject:
Silicon - Optical properties. -
Online resource:
https://doi.org/10.1007/978-3-031-17827-6
ISBN:
9783031178276
Quantum dot lasers on silicon = nonlinear properties, dynamics, and applications /
Dong, Bozhang.
Quantum dot lasers on silicon
nonlinear properties, dynamics, and applications /[electronic resource] :by Bozhang Dong. - Cham :Springer International Publishing :2023. - xx, 189 p. :ill. (chiefly col.), digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
"Doctoral thesis accepted by Institut Polytechnique de Paris, Paris, France."
Physics and Properties of Quantum-dot Lasers -- Dynamics of Quantum-Dot Lasers Subject To External Optical Feedback -- Quantum-Dot Distributed Feedback Laser With Large Optical Mismatch -- Design And Optimization Of Quantum-Dot Optical Frequency Comb On Silicon -- Nonlinear Frequency Conversion In Epitaxial Quantum-Dot Laser On Silicon -- Conclusions And Perspectives.
This book provides guidelines and design rules for developing high-performance, low-cost, and energy-efficient quantum-dot (QD) lasers for silicon photonic integrated circuits (PIC), optical frequency comb generation, and quantum information systems. To this end, the nonlinear properties and dynamics of QD lasers on silicon are investigated in depth by both theoretical analysis and experiment. This book focuses on four issues encountered in developing silicon PIC: (1) The instability of laser emission caused by the chip-scale back-reflection. (2) The degradation of laser performance at a high operating temperature. (3) The limited phase noise level and optical bandwidth of the laser, which are the bottlenecks for further increasing the transmission capacity. (4) The need for a platform with rich optical nonlinearities for future integrated quantum technologies. The promising results presented in each of these areas will enable scientists, researchers, and engineers to make an informed judgment when utilizing the QD laser for applications ranging from classical silicon PIC to integrated quantum technologies.
ISBN: 9783031178276
Standard No.: 10.1007/978-3-031-17827-6doiSubjects--Topical Terms:
604732
Silicon
--Optical properties.
LC Class. No.: QC611.6.Q35 / D65 2023
Dewey Class. No.: 621.38152
Quantum dot lasers on silicon = nonlinear properties, dynamics, and applications /
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nonlinear properties, dynamics, and applications /
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Physics and Properties of Quantum-dot Lasers -- Dynamics of Quantum-Dot Lasers Subject To External Optical Feedback -- Quantum-Dot Distributed Feedback Laser With Large Optical Mismatch -- Design And Optimization Of Quantum-Dot Optical Frequency Comb On Silicon -- Nonlinear Frequency Conversion In Epitaxial Quantum-Dot Laser On Silicon -- Conclusions And Perspectives.
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This book provides guidelines and design rules for developing high-performance, low-cost, and energy-efficient quantum-dot (QD) lasers for silicon photonic integrated circuits (PIC), optical frequency comb generation, and quantum information systems. To this end, the nonlinear properties and dynamics of QD lasers on silicon are investigated in depth by both theoretical analysis and experiment. This book focuses on four issues encountered in developing silicon PIC: (1) The instability of laser emission caused by the chip-scale back-reflection. (2) The degradation of laser performance at a high operating temperature. (3) The limited phase noise level and optical bandwidth of the laser, which are the bottlenecks for further increasing the transmission capacity. (4) The need for a platform with rich optical nonlinearities for future integrated quantum technologies. The promising results presented in each of these areas will enable scientists, researchers, and engineers to make an informed judgment when utilizing the QD laser for applications ranging from classical silicon PIC to integrated quantum technologies.
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Physics and Astronomy (SpringerNature-11651)
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EB QC611.6.Q35 D65 2023
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