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High-Energy Molecular Lasers

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Cover of 'High-Energy Molecular Lasers'

Table of Contents

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    Book Overview
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    Chapter 1 Carbon Dioxide Laser with an Output Energy of 3 kJ, Excited in Matched Regime
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    Chapter 2 SSVD in Long Gaps Containing CO 2 –N 2 –He Mixtures
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    Chapter 3 Carbon Dioxide Laser with a Variable Output Pulse Duration
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    Chapter 4 Efficiency of Utilization of Certain Readily Ionized Substances for Discharge Stabilization in CO 2 Lasers
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    Chapter 5 Electric Discharge CO 2 Laser with a Large Radiating Aperture
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    Chapter 6 Formation of an SSVD with Intense Ultraviolet Irradiation of the Cathode Region
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    Chapter 7 High-Energy Electric-Discharge CO 2 Laser with Easily Ionizable Substances Added to the Mixture
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    Chapter 8 Formation of a Spatially Homogeneous Discharge in Large-Volume CO 2 –N 2 –He Gas Mixtures
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    Chapter 9 Stability of an SSVD in a CO 2 –N 2 –He Gas Mixture with Easily Ionizable Additives
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    Chapter 10 Formation of an SSVD for the Pumping of CO 2 Lasers
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    Chapter 11 Mechanism of Formation of an SSVD Initiated by a Barrier Discharge Distributed on the Surface of a Cathode
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    Chapter 12 Formation of an SSVD for Pumping of Gas Lasers in Compact Electrode Systems
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    Chapter 13 Large-Aperture CO 2 Amplifier
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    Chapter 14 Dynamic Profiling of an Electric Field in the Case of Formation of an SSVD Under Conditions of Strong Ionization of the Electrode Regions
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    Chapter 15 Small-Signal Gain of CO 2 Lasers Pumped by an SSVD
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    Chapter 16 Feasibility of Increasing the Interelectrode Distance in an SSVD by Filling the Discharge Gap with Electrons
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    Chapter 17 Influence of Easily Ionizable Substances on the Stability of an SSVD in Working CO 2 Laser Mixtures
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    Chapter 18 Dynamics of Population of the $$\boldsymbol{A^{3} {\Sigma}_{u}^{+}} $$ Nitrogen Metastable State in an SSVD of a Pulsed CO 2 Laser
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    Chapter 19 High-Energy Molecular Lasers Pumped by an SSVD
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    Chapter 20 N 2 O Laser Pumped by an SSVD
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    Chapter 21 CO 2 - and N 2 O-Lasers with Preliminary Filling of the Gap by Electrons
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    Chapter 22 Modeling of Large-Aperture CO 2 -Lasers
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    Chapter 23 Non-chain High Radiation Energy Electric-Discharge HF(DF) Lasers
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    Chapter 24 SIVD in Nonchain HF Lasers Based on SF 6 -Hydrocarbon Mixtures
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    Chapter 25 Discharge Characteristics in a Nonchain HF(DF) Laser
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    Chapter 26 Ion–Ion Recombination in SF 6 and in SF 6 –C 2 H 6 Mixtures for High Values of E/N
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    Chapter 27 SSVD Instability of Nonchain HF(DF) Laser Mixture
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    Chapter 28 Dynamics of a SIVD in Mixtures of Sulfur Hexafluoride with Hydrocarbons
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    Chapter 29 High-Energy Nonchain HF(DF) Lasers Initiated by SSVD
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    Chapter 30 SSVDs in Strongly Electronegative Gases
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    Chapter 31 High-Energy Pulse and Pulse-Periodic Nonchain HF/DF Lasers
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    Chapter 32 UV-Preionization in Nonchain HF Lasers with a SSVD to Initiate Chemical Reaction
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    Chapter 33 Selection of High-Power Nanosecond Pulses from Large-Aperture CO 2 Oscillators
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    Chapter 34 Nanosecond Pulse Transmission of Buffered SF 6 at 10.6 μm
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    Chapter 35 20-J Nanosecond-Pulse CO 2 Laser System Based on an Injection-Mode-Locked Oscillator
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    Chapter 36 Numerical Simulation of Regenerative Amplification of Nanosecond Pulses in a CO 2 Laser
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    Chapter 37 Regenerative CO 2 Amplifier of a Nanosecond Pulse Train
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    Chapter 38 Regenerative CO 2 Amplifier with Controlled Pulse Duration
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    Chapter 39 Efficiency of an Electric-Discharge N 2 Laser
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    Chapter 40 Stimulation of a Heterogeneous Reaction of Decomposition of Ammonia on the Surface of Platinum by CO 2 Laser Radiation
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    Chapter 41 Influence of the Pumping Regime on Lasing of an He-Xe Optical-Breakdown Plasma
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    Chapter 42 Formation of the Active Medium in Lasers with Rare-Gas Mixtures Pumped by Optical Breakdown
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    Chapter 43 Low-Threshold Generation of Harmonics and Hard X-Ray Radiation in Laser Plasma
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    Chapter 44 Probe Investigations of Close-to-Surface Plasma Produced by CO 2 -Laser Nanosecond Pulse Train
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    Chapter 45 Interaction of CO 2 Laser Nanosecond Pulse Train with the Metallic Targets in Optical Breakdown Regime
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    Chapter 46 Wide Aperture Picosecond CO 2 Laser System
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    Chapter 47 Lasers for Industrial, Scientific and Ecological Use
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    Chapter 48 Generation of a Submillimeter Half-Cycle Radiation Pulse
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    Chapter 49 High Power CO 2 -Laser Radiation Conversion with AgGaSe 2 and AgGa 1−x In x Se 2 Crystals
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    Chapter 50 Subtraction of the CO 2 Laser Radiation Frequencies in a ZnGeP 2 Crystal
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    Chapter 51 Self-controlled Volume Discharge Based Molecular Lasers Scaling
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Title
High-Energy Molecular Lasers
Published by
Springer International Publishing, August 2016
DOI 10.1007/978-3-319-33359-5
ISBNs
978-3-31-933357-1, 978-3-31-933359-5
Authors

Apollonov, V. V.