Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material

Bibliographic Details
Main Author: Cohn, D.
Published: MIT Plasma Science and Fusion Center 2015
Online Access:http://hdl.handle.net/1721.1/93581
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author Cohn, D.
author_facet Cohn, D.
author_sort Cohn, D.
collection MIT
first_indexed 2024-09-23T13:51:07Z
id mit-1721.1/93581
institution Massachusetts Institute of Technology
last_indexed 2024-09-23T13:51:07Z
publishDate 2015
publisher MIT Plasma Science and Fusion Center
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spelling mit-1721.1/935812019-04-10T07:48:40Z Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material Cohn, D. 2015-02-03T02:17:10Z 2015-02-03T02:17:10Z 1987-01-01 87rr010 http://hdl.handle.net/1721.1/93581 application/pdf MIT Plasma Science and Fusion Center
spellingShingle Cohn, D.
Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title_full Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title_fullStr Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title_full_unstemmed Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title_short Concepts for millimeter/submillimeter wave cavities, mode convertors and waveguides using high temperature superconducting material
title_sort concepts for millimeter submillimeter wave cavities mode convertors and waveguides using high temperature superconducting material
url http://hdl.handle.net/1721.1/93581
work_keys_str_mv AT cohnd conceptsformillimetersubmillimeterwavecavitiesmodeconvertorsandwaveguidesusinghightemperaturesuperconductingmaterial