High Power Ultra-short Pulse Quantum-dot Lasers

High Power Ultra-short Pulse Quantum-dot Lasers
Title High Power Ultra-short Pulse Quantum-dot Lasers PDF eBook
Author Danii I. Nikitichev
Publisher
Pages 0
Release 2012
Genre Physics
ISBN

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The Physics and Engineering of Compact Quantum Dot-based Lasers for Biophotonics

The Physics and Engineering of Compact Quantum Dot-based Lasers for Biophotonics
Title The Physics and Engineering of Compact Quantum Dot-based Lasers for Biophotonics PDF eBook
Author Edik U. Rafailov
Publisher John Wiley & Sons
Pages 349
Release 2013-12-30
Genre Science
ISBN 3527665609

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Written by a team of European experts in the field, this book addresses the physics, the principles, the engineering methods, and the latest developments of efficient and compact ultrafast lasers based on novel quantum-dot structures and devices, as well as their applications in biophotonics. Recommended reading for physicists, engineers, students and lecturers in the fields of photonics, optics, laser physics, optoelectronics, and biophotonics.

High Power Ultra-short Pulse Quantum-dot Lasers

High Power Ultra-short Pulse Quantum-dot Lasers
Title High Power Ultra-short Pulse Quantum-dot Lasers PDF eBook
Author Daniil Nikitichev
Publisher
Pages 0
Release 2012-08-12
Genre Physics
ISBN 9783659169625

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In this thesis, novel multi-section laser diodes based on quantum-dot material are designed and investigated which exhibit a number of advantages such as low threshold current density; temperature-insensitivity and suppress carrier diffusion due to discrete nature of density of state of quantum-dots. The spectral versatility in the range of 1.1 μm - 1.3 μm wavelengths is demonstrated through novel mode-locking regimes such as dual-wavelength mode-locking, wavelength bistability and broad tunability. Moreover, broad pulse repetition rate tuning using an external cavity configuration is presented. A high peak power of 17.7 W was generated from the quantum-dot laser as a result of the tapered geometry of the gain section of the laser has led to successful application of such device for two-photon imaging. Dual-wavelength mode-locking is demonstrated via ground (?=1180 nm) and excited (?=1263 nm) spectral bands with optical pulses from both states simultaneously in the 5-layer quantum-dot two-section diode laser. The widest spectral separation of 83 nm between the modes was achieved in a dual-wavelength mode-locked non-vibronic laser. Power and wavelength bistability are achieved in a mode-locked multi-section laser which active region incorporates non-identical QD layers grown by molecular beam epitaxy. As a result the wavelength can be electronically controlled between 1245 nm and 1290 nm by applying different voltages to the saturable absorber. Mode-locked or continuous-wave regimes are observed for both wavelengths over a 260 mA - 330 mA current ranges with average power up to 28 mW and 31 mW, respectively. In mode-locked regime, a repetition rate of 10 GHz of optical pulses as short as 4 ps is observed. Noticeable hysteresis of average power for different bias conditions is also demonstrated. The wavelength and power bistability in QD lasers are potentially suitable for flip-flop memory application. In addition, a unique mode-locked regime at expense of the reverse bias with 50 nm wavelength tuning range from 1245 nm to 1290 nm is also presented. Broad repetition rate tunability is shown from quantum-dot external cavity mode-locked 1.27 μm laser. The repetition rate from record low of 191 MHz to 1 GHz from fundamental mode-locking was achieved. Harmonic mode-locking allows further to increase tuning up to 6.8 GHz (34th-order harmonic) from 200 MHz fundamental mode-locking. High peak power of 1.5 W can be generated directly from two-section 4 mm long laser with bent waveguide at angle of 7° at 1.14 GHz repetition rate without the use of any pulse compression and optical amplifier. Stable mode-locking with an average power up to 60 mW, corresponding to 25 pJ pulse energy is also obtained at a repetition frequency of 2.4 GHz. The minimum time-bandwidth product of 1.01 is obtained with the pulse duration of 8.4 ps. Novel tapered quantum-dot lasers with a gain-guided geometry operating in a passively mode-locked regime have been investigated, using structures that incorporated either 5 or 10 quantum dot layers. The peak power of 3.6 W is achieved with pulse duration of 3.2 ps. Furthermore, the record peak power of 17.7 W and transform limited pulses of 672 fs were achieved with optimized structure. The generation of picosecond pulses with high average power of up to 209 mW was demonstrated, corresponding to 14.2 pJ pulse energy. The improved optical parameters of the tapered laser enable to achieve nonlinear images of fluorescent beads. Thus it is for the first time that QD based compact monolithic device enables to image biological samples using two-photon microscopy imaging technique.

Ultrafast Lasers Based on Quantum Dot Structures

Ultrafast Lasers Based on Quantum Dot Structures
Title Ultrafast Lasers Based on Quantum Dot Structures PDF eBook
Author Edik U. Rafailov
Publisher John Wiley & Sons
Pages 243
Release 2011-04-08
Genre Science
ISBN 3527634495

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In this monograph, the authors address the physics and engineering together with the latest achievements of efficient and compact ultrafast lasers based on novel quantum-dot structures and devices. Their approach encompasses a broad range of laser systems, while taking into consideration not only the physical and experimental aspects but also the much needed modeling tools, thus providing a holistic understanding of this hot topic.

Ultrashort-pulse Generation from Quantum-dot Semiconductor Diode Lasers

Ultrashort-pulse Generation from Quantum-dot Semiconductor Diode Lasers
Title Ultrashort-pulse Generation from Quantum-dot Semiconductor Diode Lasers PDF eBook
Author Maria Ana Cataluna
Publisher
Pages 260
Release 2007
Genre Diodes, Semiconductor
ISBN

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Ultrashort, High Power, and Ultralow Noise Mode-locked Optical Pulse Generation Using Quantum-dot Semiconductor Lasers

Ultrashort, High Power, and Ultralow Noise Mode-locked Optical Pulse Generation Using Quantum-dot Semiconductor Lasers
Title Ultrashort, High Power, and Ultralow Noise Mode-locked Optical Pulse Generation Using Quantum-dot Semiconductor Lasers PDF eBook
Author Myoung-Taek Choi
Publisher
Pages 137
Release 2006
Genre Mode-locked lasers
ISBN

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Design guidelines are developed for the single mode operation with suppressed reflection from waveguide discontinuities. The device fabrication procedure is explained, followed by characteristics of FP laser, SOA, and monolithic two-section devices.

Ultrashort Laser Pulses

Ultrashort Laser Pulses
Title Ultrashort Laser Pulses PDF eBook
Author Wolfgang Kaiser
Publisher Springer Science & Business Media
Pages 500
Release 2006-11-14
Genre Science
ISBN 3540473033

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This second edition in paperback provides an up-to-date review of the state of the art in different generation processes for ultrashort laser pulses. Inaddition, extensive applications in a wide range of fields - in physics,engineering, chemistry, and biology - are discussed: Eight chapters dealwith the following topics: -the generation of picosecond and femtosecond laser pulses -nonlinear wave interactions - new investigations in solid-state physics - recent progress in optoelectronics - advances in coherent material excitations - ultrafast vibrational lifetimes and energy redistribution in liquids - new observations of chemical reactions in the liquid state - the primary processes of important biological systems The book is essential reading for scientists and engineers who want to know what is going on in this rapidly advancing field. It should also interest graduate students and others who seek an introduction to laserpulses.