<?xml version='1.0' encoding='UTF-8'?><codeBook xmlns="ddi:codebook:2_5" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="ddi:codebook:2_5 https://ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" version="2.5"><docDscr><citation><titlStmt><titl>Linear Theory of Electron-Plasma Waves at Arbitrary Collisionality</titl><IDNo agency="DOI">doi:10.7910/DVN/LOAT9C</IDNo></titlStmt><distStmt><distrbtr source="archive">Harvard Dataverse</distrbtr><distDate>2018-12-04</distDate></distStmt><verStmt source="archive"><version date="2018-12-04" type="RELEASED">1</version></verStmt><biblCit>R. Jorge, P. Ricci, S. Brunner, S. Gamba, V. Konovets, N. F. Loureiro, L. M. Perrone, N. Teixeira, 2018, "Linear Theory of Electron-Plasma Waves at Arbitrary Collisionality", https://doi.org/10.7910/DVN/LOAT9C, Harvard Dataverse, V1</biblCit></citation></docDscr><stdyDscr><citation><titlStmt><titl>Linear Theory of Electron-Plasma Waves at Arbitrary Collisionality</titl><IDNo agency="DOI">doi:10.7910/DVN/LOAT9C</IDNo></titlStmt><rspStmt><AuthEnty>R. Jorge,  P. Ricci, S. Brunner, S. Gamba, V. Konovets, N. F. Loureiro, L. M. Perrone, N. Teixeira</AuthEnty></rspStmt><prodStmt/><distStmt><distrbtr source="archive">Harvard Dataverse</distrbtr></distStmt><holdings URI="https://doi.org/10.7910/DVN/LOAT9C"/></citation><stdyInfo><subject><keyword xml:lang="en">Physics</keyword><keyword>Boltzmann equation</keyword><keyword>collision operators</keyword><keyword>polynomial expansions</keyword><keyword>spectra</keyword><keyword>waves</keyword></subject><abstract>The dynamics of electron-plasma waves are described at arbitrary collisionality by considering the full Coulomb collision operator. The description is based on a Hermite- Laguerre decomposition of the velocity dependence of the electron distribution function. The damping rate, frequency, and eigenmode spectrum of electron-plasma waves are found as functions of the collision frequency and wavelength. A comparison is made between the collisionless Landau damping limit, the Lenard-Bernstein and Dougherty collision operators, and the electron-ion collision operator, finding large deviations in the damping rates and eigenmode spectra. A purely damped entropy mode, characteristic of a plasma where pitch-angle scattering effects are dominant with respect to collisionless effects, is shown to emerge numerically, and its dispersion relation is analytically derived. It is shown that such a mode is absent when simplified collision operators are used, and that like-particle collisions strongly influence the damping rate of the entropy mode.</abstract><sumDscr/><notes>&lt;a href="http://library.psfc.mit.edu/catalog/reports/2010/18ja/18ja032/abstract.php">PSFC REPORT PSFC/JA-18-32&lt;/a>&lt;br />&lt;br />N.F. Loureiro was partially funded by the U.S. Department of Energy Grant No. DE-FG02-91ER54109.</notes></stdyInfo><method><dataColl><sources/></dataColl><anlyInfo/></method><dataAccs><setAvail/><useStmt/><notes type="DVN:TOU" level="dv">This dataset is made available without information on how it can be used. You should communicate with the Contact(s) specified before use.</notes></dataAccs><othrStdyMat/></stdyDscr><otherMat ID="f3323461" URI="https://dataverse.harvard.edu/api/access/datafile/3323461" level="datafile"><labl>18ja032_archival_manuscript.pdf</labl><txt></txt><notes level="file" type="DATAVERSE:CONTENTTYPE" subject="Content/MIME Type">application/pdf</notes></otherMat></codeBook>