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190215s2019 gw | o |||| 0|eng d
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9783030125363
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10.1007/978-3-030-12536-3
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doi
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(DE-He213)978-3-030-12536-3
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QC717.6-718.8
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530.44
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Hubeny, Michael.
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author.
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aut
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http://id.loc.gov/vocabulary/relators/aut
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The Dynamics of Electrons in Linear Plasma Devices and Its Impact on Plasma Surface Interaction
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[electronic resource] /
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by Michael Hubeny.
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Cham :
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Springer International Publishing :
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Imprint: Springer,
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2019.
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1 online resource (XIV, 126 p.) 67 illus., 37 illus. in color.
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text
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txt
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rdacontent
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computer
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rdamedia
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online resource
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cr
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rdacarrier
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text file
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PDF
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rda
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Springer Theses, Recognizing Outstanding Ph.D. Research,
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2190-5053
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0
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Introduction -- Plasma Wall Transition Dynamics -- Laser Light Scattering as Plasma Diagnostic -- Experimental Setup on PSI-2 -- Thomson Scattering Setup -- Data Analysis and Calibration -- Steady State Plasma Results -- Plasma Turbulence Results -- Summary and Conclusion.
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Access restricted by licensing agreement.
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Turbulence in plasma surface interaction holds crucial uncertainties for its impact on material erosion in the operation of fusion reactors. In this thesis, the design, development and operation of a Thomson scattering diagnostic and its novel implementation with fast visual imaging created a versatile tool to investigate intermittently occuring plasma oscillations. Specifically, ballistic transport events in the plasma edge, constituting turbulent transport, have been targeted in this thesis. With the help of a custom photon counting algorithm, the conditional averaging technique was applied on Thomson scattering for the first time to allow spatial and pseudo-time-resolved measurements. Since plasma turbulence and the emerging transport phenomena are comparable in most magnetized devices, the diagnostic development and the results from the linear plasma device PSI-2 are useful for an implementation of similar techniques in larger fusion experiments. Furthermore, the obtained results indicate a strong enhancement of erosion with turbulent transport and thus underline the importance of dedicated experiments investigating plasma turbulence in the framework of erosion in future fusion reactors.
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Access is available to the Yale community.
650
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Chemistry, inorganic.
710
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SpringerLink (Online service)
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Springer ENIN.
773
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Springer eBooks
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8
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Printed edition:
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9783030125356
776
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8
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Printed edition:
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9783030125370
776
0
8
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Printed edition:
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9783030125387
830
0
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Springer Theses, Recognizing Outstanding Ph.D. Research,
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2190-5053
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8
0
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yulint
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None
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Online resource
852
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0
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Online resource
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0
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Online book
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https://yale.idm.oclc.org/login?URL=https://doi.org/10.1007/978-3-030-12536-3
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QC717.6-718.8
902
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Yale Internet Resource
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Yale Internet Resource >> None|DELIM|13982488
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online resource
907
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2019-02-27T14:08:25.000Z
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DO NOT EDIT. DO NOT EXPORT.
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0
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https://doi.org/10.1007/978-3-030-12536-3