World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
38
Citations
5444
World Ranking
8097
National Ranking
2235

Overview

Jes Asmussen is a researcher affiliated with Michigan State University in the United States, specializing in Arts and Humanities with a focus on multiple related subfields. Their scholarly work spans archeology, political science and international relations, anthropology, philosophy, and history. These areas contribute to a broad interdisciplinary perspective on historical and cultural studies.

Their research addresses main topics including Islamic studies and history, archaeology and historical studies, Eurasian exchange networks, medieval and classical philosophy, historical astronomy, education related to Islamic studies, and ancient Near East history.

Jes Asmussen has extensively published in the venue Encyclopaedia Iranica Online, contributing 20 publications there. Recent papers authored by Asmussen include:

  • ANGALYŪN, 2020, Encyclopaedia Iranica Online
  • INSTITUTE FOR IRANIAN PHILOLOGY, 2020, Encyclopaedia Iranica Online
  • AFRAHĀṬ, 2020, Encyclopaedia Iranica Online
  • AĒŠMA, 2020, Encyclopaedia Iranica Online
  • ARMĀʾĪL, 2020, Encyclopaedia Iranica Online

Their research collaborations include frequent coauthors such as Fereydun Vahman, with whom they published two works, as well as Claus Valling Pedersen, Muhammad A. Dandamayev, Morton Smith, and Kenneth J. Thomas, each contributing to one joint publication with Asmussen.

Best Publications

  • Electron cyclotron resonance microwave discharges for etching and thin‐film deposition

    Jes Asmussen

  • METHOD FOR PLASMA TREATMENT OF SURFACE AND APPARATUS THEREFOR

    G Zang;Jess Asmussen

  • Diamond Films Handbook

    Jes Asmussen;D. K. Reinhard

  • Ion generating apparatus and method for the use thereof

    Jes Asmussen;Joseph J. Root

  • Large-area high-quality single crystal diamond

    Matthias Schreck;Jes Asmussen;Shinichi Shikata;Jean Charles Arnault

  • Charged particle densities and energy distributions in a multipolar electron cyclotron resonant plasma etching source

    J. Hopwood;D. K. Reinhard;J. Asmussen

  • Method for treating a surface with a microwave or UHF plasma and improved apparatus

    Jes Asmussen;Donnie K. Reinhard

  • The design of a microwave plasma cavity

    J. Asmussen;R. Mallavarpu;J.R. Hamann;Hee Chung Park

  • The design and application of electron cyclotron resonance discharges

    J. Asmussen;T.A. Grotjohn;Pengun Mak;M.A. Perrin

  • Growth strategies for large and high quality single crystal diamond substrates

    Shreya Nad;Yajun Gu;Jes Asmussen

  • Microwave electrothermal thruster performance in helium gas

    S. Whitehair;J. Asmussen;S. Nakanishi

  • Improved microwave plasma cavity reactor for diamond synthesis at high-pressure and high power density

    K.W. Hemawan;T.A. Grotjohn;D.K. Reinhard;J. Asmussen

  • Combustion dynamics for energetically enhanced flames using direct microwave energy coupling

    Xing Rao;Kadek Hemawan;Indrek Wichman;Campbell Carter

  • Process for synthesizing uniform nanocrystalline films

    Jes Asmussen;Wen-Shin Huang

  • Surface acoustic waves on nanocrystalline diamond

    B. Bi;W.-S. Huang;J. Asmussen;B. Golding

  • Microwave plasma reactor design for high pressure and high power density diamond synthesis

    Yajun Gu;J. Lu;T. Grotjohn;T. Schuelke

  • Investigation of diamond deposition uniformity and quality for freestanding film and substrate applications

    S.S. Zuo;M.K. Yaran;T.A. Grotjohn;D.K. Reinhard

  • Synthesis of p-type ZnO thin films using co-doping techniques based on KrF excimer laser deposition

    Tamiko Ohshima;Tomoaki Ikegami;Kenji Ebihara;Jes Asmussen

  • Single‐mode or controlled multimode microwave cavity applicators for precision materials processing

    J. Asmussen;H. H. Lin;B. Manring;R. Fritz

  • Method for treating a material using radiofrequency waves

    Jes Asmussen

  • Apparatus for the coating of material on a substrate using a microwave or UHF plasma

    Jes Asmussen;Jie Zhang

  • An experimental study of high pressure synthesis of diamond films using a microwave cavity plasma reactor

    Kuo Ping Kuo;Jes Asmussen

Frequent Co-Authors

Thomas R. Bieler
Thomas R. Bieler Michigan State University
Mercouri G. Kanatzidis
Mercouri G. Kanatzidis Northwestern University
Greg M. Swain
Greg M. Swain Michigan State University
Rustum Roy
Rustum Roy Pennsylvania State University
Shinichi Shikata
Shinichi Shikata Kwansei Gakuin University
John H. Booske
John H. Booske University of Wisconsin–Madison
Campbell D. Carter
Campbell D. Carter United States Air Force Research Laboratory
Ning Xi
Ning Xi University of Hong Kong
Xin Yao
Xin Yao Lingnan University

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