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Diagnostics for Experimental Thermonuclear Fusion Reactors

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Cover of 'Diagnostics for Experimental Thermonuclear Fusion Reactors'

Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 The ITER Device
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    Chapter 2 The ITER Diagnostic Programme
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    Chapter 3 Requirements for ITER Diagnostics
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    Chapter 4 ITER Plasma Diagnostics Generic Access
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    Chapter 5 Radiation Hardening of Diagnostic Components
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    Chapter 6 Imitation of Fusion Reactor Environment Effects on the Inner Elements of Spectroscopical, MM and Sub-MM Diagnostics
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    Chapter 7 Overview of Magnetic Diagnostics Planned for ITER
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    Chapter 8 Magnetic Equilibrium Reconstruction Techniques for Tokamak Reactors
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    Chapter 9 Fast and Accurate Methods of Plasma Boundary Determination in ITER from External Magnetic Measurements
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    Chapter 10 A Hybrid Magnetic Probe for Steady State Magnetic Field Measurements
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    Chapter 11 Comparison of Different Reflectometry Techniques
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    Chapter 12 Reflectometry Applications to ITER
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    Chapter 13 Reflectometry for ITER Density Profiles
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    Chapter 14 Proposal of Reflectometry System for ITER
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    Chapter 15 ICRF Physics Measurements by Reflectometry
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    Chapter 16 ITER Relevant Reflectometry Developments on DIII-D
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    Chapter 17 Status of the RTP Pulsed-Radar Reflectometer and Prospects for ITER
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    Chapter 18 Millimeter-Wave Diagnostic Systems for ITER
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    Chapter 19 Experimental Results of Amplitude Modulation Reflectometry on High Density Tokamak Plasmas
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    Chapter 20 Two Dimensional Effects of Turbulence on Density Profile Measurements by Reflectometry
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    Chapter 21 Physics Issues of ECE and ECA for ITER
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    Chapter 22 ECE Diagnostic on ITER
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    Chapter 23 Instrumentation of ECE for ITER
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    Chapter 24 Rotating Reflector Spectrometers for ECE Diagnostic in Large Fusion Devices
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    Chapter 25 Multimode Light Collection Systems for ECE Diagnostics
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    Chapter 26 Advantages and Limitations of Microwave Diagnostics in ITER
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    Chapter 27 Application of Interferometry and Faraday Rotation Techniques for Density Measurements on ITER
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    Chapter 28 Development of Dual CO 2 Laser Interferometer for Large Tokamak
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    Chapter 29 Infrared Laser Diagnostics for ITER
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    Chapter 30 A Thomson Scattering Scheme for Obtaining T e and n e Profiles of the ITER Core Plasma
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    Chapter 31 The Concept of ITER Divertor Plasma Diagnostics by Means of LIDAR Technique
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    Chapter 32 Thomson Scattering at the Edge of ITER
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    Chapter 33 Active Spectroscopic Diagnostics for ITER Utilizing Neutral Beams
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    Chapter 34 Spectroscopy for Impurity Control in ITER
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    Chapter 35 Edge n T /n D by Two-Photon Induced Ly-α Fluorescence
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    Chapter 36 Development of Luminescent Detectors for Hot Plasmas
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    Chapter 37 Multilayer Mirror Based Monitors for Impurity Controls in ITER
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    Chapter 38 Feasibility of Quantitative Spectroscopy on ITER
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    Chapter 39 Laser-Induced Fluorescence
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    Chapter 40 Concepts and Requirements for ITER X-Ray Diagnostics
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    Chapter 41 Applications of X-Ray Spectroscopy to ITER
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    Chapter 42 Diamond Detector Based SXR Array for ITER
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    Chapter 43 Fusion Product Measurements in D-T Plasmas in TFTR
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    Chapter 44 DT Neutron Measurements and Experience on TFTR
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    Chapter 45 A Neutron Camera for ITER: Conceptual Design
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    Chapter 46 Neutron Spectrometry for ITER
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    Chapter 47 Advanced Neutron Camera with Spectrometer Functions
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    Chapter 48 The MPR Neutron Spectrometer Project
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    Chapter 49 The MPR Neutron Diagnostic at Jet — An ITER Prototype Study
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    Chapter 50 Detailed Ion Temperature Information from the Neutron Emission Spectrum
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    Chapter 51 Neutron Spectrometers for ITER
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    Chapter 52 Diamond Detector Based DT Neutron Spectrometer for ITER
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    Chapter 53 Ion Temperature Profile Measurements by Means of Neutron Spectroscopy
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    Chapter 54 Scintillating Fibre Neutron Spectrometer
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    Chapter 55 Neutron Image System to Measure Neutron Profile of ITER Plasma
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    Chapter 56 ITER Plasma Position and Power Determination from Neutron Measurements
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    Chapter 57 ITER Gamma Diagnostics: 2-D Neutron and Gamma Camera
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    Chapter 58 Alpha-Physics and Measurement Requirements for ITER
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    Chapter 59 Initial Operation of an ITER Compatible Lost Alpha Detector at JET
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    Chapter 60 ITER Alpha Particle Diagnostics Using Knock-On Ion Tails
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    Chapter 61 Charge-Exchange (C-X) Diagnostics of Fast Confined Alphas: Present Situation and Prospects for ITER
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    Chapter 62 A Diagnostic He 0 Beam for ITER and LHD
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    Chapter 63 Alpha Slowdown Measurement for ITER
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    Chapter 64 Collective Thomson Scattering Diagnostic of Confined Alpha Particle Distributions in ITER
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    Chapter 65 Review of Possibilities for a Collective Thomson Scattering System on ITER
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    Chapter 66 Divertor Diagnostics for JET
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    Chapter 67 Spectroscopy of Divertor Plasmas
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    Chapter 68 Bolometry for Divertor Characterization and Control
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    Chapter 69 Bolometer for ITER
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    Chapter 70 Neutral Gas Diagnostic for ITER
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    Chapter 71 Optical Surface Temperature Measurement
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    Chapter 72 Langmuir Probes and Optical Diagnostics for the ITER Divertor
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    Chapter 73 Laser Diagnostics of Hydrogen and Helium Atoms in a Divertor Region
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    Chapter 74 Thermal Helium Beam for Diagnostic of Electron Density and Temperature
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    Chapter 75 A Rad-Hard, Steady-State, Digital Imaging Bolometer System for ITER
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    Chapter 76 Overview of W7-X Diagnostics
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    Chapter 77 Diagnostics for LHD
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    Chapter 78 The T-15 Fusion Products Study: Plans and Diagnostics
Overall attention for this book and its chapters
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Citations

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Title
Diagnostics for Experimental Thermonuclear Fusion Reactors
Published by
Springer US, December 2012
DOI 10.1007/978-1-4613-0369-5
ISBNs
978-1-4613-8020-7, 978-1-4613-0369-5
Editors

Stott, Peter E., Gorini, Giuseppe, Sindoni, Elio

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 10 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 10 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 6 60%
Student > Ph. D. Student 1 10%
Student > Bachelor 1 10%
Professor > Associate Professor 1 10%
Unknown 1 10%
Readers by discipline Count As %
Engineering 4 40%
Physics and Astronomy 3 30%
Materials Science 1 10%
Energy 1 10%
Unknown 1 10%