Zobrazeno 1 - 10
of 33
pro vyhledávání: '"Peter S. Friedman"'
Autor:
Erez Etzion, D. Levin, N. Kamp, R. P. Johnson, J. W. Chapman, Claudio Ferretti, Peter S. Friedman, Alexis Mulski, A. Das, Y. Benhammou, M. Raviv-Moshe, H. Ochoa, Nicholas Ristow
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 954:161231
The Microhexcavity Panel ( muHex) is a novel gaseous micropattern particle detector comprised of a dense array of close-packed hexagonal pixels, each operating as an independent detection unit for ionizing radiation. It is a second generation detecto
Autor:
Sofia Sirvent, Andres F. Vallejo, Emma Corden, Ying Teo, James Davies, Kalum Clayton, Eleanor G. Seaby, Chester Lai, Sarah Ennis, Rfeef Alyami, Gemma Douilhet, Lareb S. N. Dean, Matthew Loxham, Sarah Horswill, Eugene Healy, Graham Roberts, Nigel J. Hall, Peter S. Friedmann, Harinder Singh, Clare L. Bennett, Michael R Ardern-Jones, Marta E. Polak
Publikováno v:
Nature Communications, Vol 14, Iss 1, Pp 1-14 (2023)
Abstract Regulation of cutaneous immunity is severely compromised in inflammatory skin disease. To investigate the molecular crosstalk underpinning tolerance versus inflammation in atopic dermatitis, we utilise a human in vivo allergen challenge stud
Externí odkaz:
https://doaj.org/article/8a9e3b6f395949309fb497cf8ddaabc0
Autor:
D. Levin, R. C. Ball, Claudio Ferretti, Michael Davies, Erez Etzion, Bing Zhou, Curtis Weaverdyck, J. W. Chapman, Peter S. Friedman, Yiftah Silver, Y. Benhammou, R. L. Varner, M. Ben-Moshe, R. Bensimon
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 784:56-59
A new type of gaseous micropattern particle detector based on a closed-cell microcavity plasma panel sensor is reported. The first device was fabricated with 1 x 1 x 2 mm cells. It has shown very clean signals of 0.6 to 2.5 volt amplitude, fast rise
Autor:
R. L. Varner, Yan Benhammou, Hassan Bentefour, Daniel Levin, R. C. Ball, J. R. Beene, M. Ben-Moshe, Peter S. Friedman, J. W. Chapman, Erez Etzion, Yiftah Silver, Curtis Weaverdyck, Bing Zhou, Claudio Ferretti
Publikováno v:
Journal of the Society for Information Display. 21:46-54
The plasma panel sensor (PPS) is a gaseous micropattern radiation detector under current development. It has many operational and fabrication principles common to plasma display panels. It comprises a dense matrix of small, gas plasma discharge cells
Autor:
J. R. Beene, Yan Benhammou, Nir Guttman, Erez Etzion, Daniel Levin, Yiftah Silver, M. Ben Moshe, Bing Zhou, R. L. Varner, Peter S. Friedman, Curtis Weaverdyck, Claudio Ferretti, R. C. Ball, J. W. Chapman
Publikováno v:
SID Symposium Digest of Technical Papers. 43:316-319
The plasma panel sensor is an ionizing photon and particle radiation detector derived from PDP technology with high gain and nanosecond response. Experimental results in detecting cosmic ray muons and beta particles from radioactive sources are descr
Autor:
R. C. Ball, Erez Etzion, Y. Benhammou, Tiesheng Dai, D. Levin, Curtis Weaverdyck, Peter S. Friedman, M. Ben Moshe, S. N. White, R. L. Varner, J. W. Chapman, J. R. Beene, Bing Zhou, Yiftah Silver
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 652:315-318
A radiation detector technology based on plasma display panels (PDPs), the underlying engine of panel plasma television displays, is being investigated. Emerging from this well-established television technology is the Plasma Panel Sensor (PPS), a nov
Publikováno v:
2015 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC).
Particle tracking technology is currently being explored with Monte Carlo simulation studies as well as first experimental prototypes as a method to improve the planning and delivery accuracy of hadron therapy. Advanced particle tracking technology i
Autor:
E. Etzion, Claudio Ferretti, R. C. Ball, R. L. Varner, Yan Benhammou, Curtis Weaverdyck, Tiesheng Dai, Nir Guttman, Peter S. Friedman, J.R. Beene, M. Ben-Moshe, Daniel Levin, Yiftah Silver, Bing Zhou, J. W. Chapman, Stefan Ritt
A radiation detector based on plasma display panel technology, which is the principal component of plasma television displays is presented. Plasma Panel Sensor (PPS) technology is a variant of micropattern gas radiation detectors. The PPS is conceive
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::630c045107cac6008636fc2de0f5c62f
http://arxiv.org/abs/1205.6829
http://arxiv.org/abs/1205.6829
Autor:
J. M. Yu, Bing Zhou, Curtis Weaverdyck, D. Levin, M. Ben Moshe, Erez Etzion, G. Sherman, Tiesheng Dai, R. L. Varner, Claudio Ferretti, Y. Benhammou, Peter S. Friedman, S. N. White, Yiftah Silver, J. R. Beene, J. W. Chapman, R. C. Ball
Publikováno v:
IEEE Nuclear Science Symposuim & Medical Imaging Conference.
Plasma Display Panels (PDP), the underlying engine of panel plasma television displays, are being investigated for their utility as radiation detectors called Plasma Panel Sensors (PPS). The PPS a novel variant of a micropattern radiation detector, i
Autor:
Curtis Weaverdyck, J. W. Chapman, R. C. Ball, D. Levin, Erez Etzion, M. Ben Moshe, Peter S. Friedman, Bing Zhou
Performance demands for high and super-high luminosity at the LHC (up to 10^35 cm^(-2) sec^(-1) after the 2017 shutdown) and at future colliders demand high resolution tracking detectors with very fast time response and excellent temporal and spatial
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::eff2ee4a1395315d75b1b301d6c4f16e
http://arxiv.org/abs/1007.0486
http://arxiv.org/abs/1007.0486