The 2017 Plasma Roadmap: Low temperature plasma science and technology

Дорожная карта плазмы — 2017: наука и технологии низкотемпературной плазмы
David B. Graves, Uwe Kortshagen, Osamu Sakai, Annemie Bogaerts, Jonathan Tennyson, Pietro Favia, Anthony B. Murphy, Akira Mizuno, M. C. M. van de Sanden, Gary M. Hieftje, Ute Ebert, Seiji Samukawa, Peter Bruggeman, Masaru Hori, Shahid Rauf, Svetlana Starikovskaia, Mark J. Kushner, Uwe Czarnetzki, N. J. Mason, Selma Mededovic Thagard, Vittorio Colombo, Igor Adamovich, Scott Baalrud, Mark Cappelli, J. G. Eden, Satoshi Hamaguchi, Igor Kaganovich, Stéphane Mazouffre, H-R Metelmann, Éric Moreau, Brendan A. Niemira, G. S. Oehrlein, Zoran Petrović, Leanne C. Pitchford, Y-K Pu, Kazuo Terashima, M. M. Turner, A. Vardelle
2017-07-14

Plasma Roadmapenabling technologyinterdisciplinary plasma researchlow temperature plasmaplasma science and technology
Journal of Physics D: Applied Physics published the first Plasma Roadmap in 2012 consisting of the individual perspectives of 16 leading experts in the various sub-fields of low temperature plasma science and technology. The 2017 Plasma Roadmap is the first update of a planned series of periodic updates of the Plasma Roadmap. The continuously growing interdisciplinary nature of the low temperature plasma field and its equally broad range of applications are making it increasingly difficult to identify major challenges that encompass all of the many sub-fields and applications. This intellectual diversity is ultimately a strength of the field. The current state of the art for the 19 sub-fields addressed in this roadmap demonstrates the enviable track record of the low temperature plasma field in the development of plasmas as an enabling technology for a vast range of technologies that underpin our modern society. At the same time, the many important scientific and technological challenges shared in this roadmap show that the path forward is not only scientifically rich but has the potential to make wide and far reaching contributions to many societal challenges.
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Addressing these challenges could enable broad, far-reaching contributions to major societal needs.
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Despite intellectual diversity across sub-fields, the roadmap identifies shared scientific and technological challenges that define priorities for future progress.
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Low-temperature plasma research has an established record of enabling technologies across a vast range of applications supporting modern society.
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The 2017 Plasma Roadmap updates the 2012 roadmap as part of a planned series of periodic assessments of low-temperature plasma science and technology.
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The roadmap covers 19 sub-fields, reflecting the field’s continuously expanding interdisciplinary scope and broad range of applications.

low-temperature plasma science and technology, including its 19 sub-fields and applications

the current state of the art and major scientific and technological challenges shaping the development and applications of low-temperature plasmas

Publication Details
Publication Date
2017-07-14
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Authors
David B. Graves
Uwe Kortshagen
Osamu Sakai
Annemie Bogaerts
Jonathan Tennyson
Pietro Favia
Anthony B. Murphy
Akira Mizuno
M. C. M. van de Sanden
Gary M. Hieftje
Ute Ebert
Seiji Samukawa
Peter Bruggeman
Masaru Hori
Shahid Rauf
Svetlana Starikovskaia
Mark J. Kushner
Uwe Czarnetzki
N. J. Mason
Selma Mededovic Thagard
Vittorio Colombo
Igor Adamovich
Scott Baalrud
Mark Cappelli
J. G. Eden
Satoshi Hamaguchi
Igor Kaganovich
Stéphane Mazouffre
H-R Metelmann
Éric Moreau
Brendan A. Niemira
G. S. Oehrlein
Zoran Petrović
Leanne C. Pitchford
Y-K Pu
Kazuo Terashima
M. M. Turner
A. Vardelle
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