Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Metzgar, Ethan"'
Autor:
Xu, Ting, Al-Mahmoud, Yamen, Ao, Hiroyuki, Asciutto, Joseph, Bird, Brian, Bonofiglio, Jon, Bullock, Benjamin, Bultman, Nathan, Casagrande, Fabio, Chang, Wei, Choi, Yoonhyuck, Compton, Chris, Curtin, John, Davidson, Kelly, Elliott, Kyle, Facco, Alberto, Ganni, Venkatarao, Ganshyn, Andrei, Gao, Jian, Gibson, Paul, Hao, Yue, Hartung, Walter, Hasan, Nusair, Hodges, Leslie, Holland, Kent, Hosoyama, Kenji, Hulbert, Jeffrey, Ikegami, Masanori, Kanemura, Takuji, Kelly, Michael, Kim, Sang-Hoon, Knudsen, Peter, Laxdal, Robert, Li, ZhiYong, Lidia, Steven, Machicoane, Guillaume, Magsig, Chris, Manwiller, Peter, Marti, Felix, Maruta, Tomofumi, McGee, Kellen, Metzgar, Ethan, Miller, Samuel, Morris, Dan, Nguyen, Hai, Ostroumov, Peter, Plastun, Alexander, Popielarski, John, Popielarski, Laura, Rao, Xing, Reaume, Marc, Ren, Haitao, Saito, Kenji, Shuptar, Mark, Stolz, Andreas, Taylor, Alex, Tousignant, Bryan, Victory, Apa Danica, Victory, Daniel, Wei, Jie, Wellman, Evan, Wenstrom, John, Wiseman, Mark, Yamazaki, Yoshishige, Zhang, Cong, Zhao, Qiang, Zhao, Shen
The Facility for Rare Isotope Beams (FRIB) is an ac-celerator-based facility funded by the US Department of Energy for nuclear physics research. FRIB is nearing the end of technical construction, with first user beams ex-pected in Summer 2022. Key fe
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::dfa9a2ee0bf320b24a4f2f493159a228
Autor:
Wei, Jie, Ao, Hiroyuki, Arend, Ben, Beher, Steven, Bollen, Georg, Bultman, Nathan, Casagrande, Fabio, Chang, Wei, Choi, Yoonhyuck, Cogan, Scott, Compton, Chris, Cortesi, Marco, Curtin, John, Davidson, Kelly, Du, Xiaoji, Elliott, Kyle, Ewert, Brandon, Facco, Alberto, Fila, Adam, Fukushima, Kei, Ganni, Venkatarao, Ganshyn, Andrei, Ginter, Thomas, Glasmacher, Thomas, Guo, Junwei, Hao, Yue, Hartung, Walter, Hasan, Nusair, Hausmann, Marc, Holland, Kent, Hosoyama, Kenji, Hseuh, Hsiao-Chaun, Ikegami, Masanori, Jager, Devin, Jones, Shelly, Joseph, Nathan, Kanemura, Takuji, Kelly, Michael, Kim, Sang-Hoon, Knowles, Cody, Knudsen, Peter, Konomi, Taro, Kortum, Brandon, Kwan, Elaine, Lange, Tanner, Larmann, Michael, Larter, Thomas, Laturkar, Kaustubh, Laxdal, Robert, LeTourneau, John, Li, ZhiYong, Lidia, Steven, Machicoane, Guillaume, Magsig, Chris, Manwiller, Peter, Marti, Felix, Maruta, Tomofumi, Metzgar, Ethan, Miller, Samuel, Momozaki, Yoichi, Morris, Dan, Mugerian, Martin, Nesterenko, Igor, Nguyen, Chinh, Ostroumov, Peter, Patil, Mohit, Plastun, Alexander, Popielarski, John, Popielarski, Laura, Portillo, Mauricio, Priller, John, Rao, Xing, Reaume, Marc, Ren, Haitao, Saito, Kenji, Sherrill, Bradley, Smith, Mallory, Steiner, Mathias, Stolz, Andreas, Tarasov, Oleg, Tousignant, Bryan, Walker, Roben, Wang, Xiaole, Wenstrom, John, West, Genevieve, Wiseman, Mark, Witgen, Ken, Wright, Mathew, Xu, Ting, Xu, Tracy, Yamazaki, Yoshishige, Zhang, Tong, Zhao, Qiang, Zhao, Shen
The Facility for Rare Isotope Beams (FRIB) project has completed technical construction in January 2022, five months ahead of schedule baselined about 10 years ago. Beam commissioning has been planned in seven phases starting from 2017 when the norma
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::db1762fb30b4a34e1b4dd2129d15dac8
Autor:
Luo, Didi, Metzgar, Ethan, Nakajima, Toshiyuki, Nasu, IchiKei, Popielarski, Laura, Saito, Kenji, Shanab, Safwan, Simpson, George, Taguchi, Junji
In our previous studies of High Field Q-slope (HFQS) we have concluded that nitrogen contamination from the nitric acid is the main cause of the degradation of the Q in buffered chemical polished cavities. Our conclusion is made based on previously u
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::595f69c9cebbb5356bd138a9abd3114b
Autor:
Wei, Jie, Ao, Hiroyuki, Beher, Steven, Bird, Brian, Bultman, Nathan, Casagrande, Fabio, Chabot, Daron, Chang, Wei, Cogan, Scott, Compton, Chris, Curtin, John, Davidson, Kelly, Daykin, Evan, Dixon, Kelly, Elliott, Kyle, Facco, Alberto, Fila, Adam, Ganni, Venkatarao, Ganshyn, Andrei, Gibson, Paul, Glasmacher, Thomas, Grender, Ian, Hartung, Walter, Hodges, Leslie, Holland, Kent, Hosoyama, Kenji, Hseuh, Hsiao-Chaun, Hussain, Aftab, Ikegami, Masanori, Jones, Shelly, Kanemura, Takuji, Kelly, Michael, Kim, Sang-Hoon, Knudsen, Peter, Konrad, Martin, Laxdal, Robert, LeTourneau, John, Li, ZhiYong, Lidia, Steven, Machicoane, Guillaume, Manwiller, Peter, Marti, Felix, Maruta, Tomofumi, Metzgar, Ethan, Miller, Samuel, Morris, Dan, Nguyen, Chinh, Openlander, Keith, Ostroumov, Peter, Plastun, Alexander, Popielarski, John, Popielarski, Laura, Priller, John, Reaume, Marc, Ren, Haitao, Russo, Thomas, Saito, Kenji, Shuptar, Mark, Stetson, Jeffry, Victory, Daniel, Walker, Roben, Wang, Xiaole, Wenstrom, John, Wiseman, Mark, Wright, Mathew, Xu, Mengxin, Xu, Ting, Yamazaki, Yoshishige, Zhao, Qiang, Zhao, Shen
The Facility for Rare Isotope Beams (FRIB) superconducting (SC) driver linac is designed to accelerate all stable ions including uranium to energies above 200 MeV/u primarily with 46 cryomodules containing 324 quarter-wave resonators (QWR) and half-w
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::af95b72b6189bbc17fde227f5853ccb3
Autor:
Popielarski, John, Chang, Wei, Compton, Chris, Hartung, Walter, Kim, Sang-Hoon, Metzgar, Ethan, Miller, Samuel, Saito, Kenji, Schwartz, John, Xu, Ting
The Facility for Rare Isotope Beams (FRIB) is under construction at Michigan State University (MSU). The FRIB superconducting driver linac will accelerate ion beams to 200 MeV per nucleon. The driver linac requires 10⁴ quarter-wave resonators (QWRs
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f14cd986216a1252c2e967e4f240cfa7
Autor:
Metzgar, Ethan, Barker, Brian, Elliott, Kyle, Hartung, Walter, Popielarski, Laura, Simpson, George, Victory, Daniel, Whaley, Joseph
Baseline coldmass production for the linear particle accelerator at the Facility for Rare Isotope Beams (FRIB) is nearing completion. This paper will review the processing of cavities through the FRIB superconducting radio frequency (SRF) coldmass pr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::096f34211074a43967aa23ebe001bceb
Autor:
Elliott, Kyle, Barker, Brian, Donald, Charles, Metzgar, Ethan, Popielarski, Laura, Victory, Daniel, Whaley, Joseph, Wilbur, Michael
The superconducting radio frequency (SRF) portion of the Facility for Rare Isotope Beams (FRIB) linear accelerator consists of 46 cryomodules of 6 different types. Each cryomodule contains a coldmass consisting of a string of SRF resonators. There ar
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::41aa2362756a7b17b0bbd7c508f6722f
Autor:
Compton, Chris, Ao, Hiroyuki, Asciutto, Joseph, Craft, Jim, Elliott, Kyle, Hartung, Walter, Kim, Sang-Hoon, Metzgar, Ethan, Miller, Samuel, Popielarski, John, Popielarski, Laura, Saito, Kenji, Xu, Ting
Publikováno v:
DOE / OSTI
The Facility for Rare Isotope Beams (FRIB), located on the campus of Michigan State University (MSU) will require 324 Superconducting Radio Frequency (SRF) cavities in the driver linac. Four types of cavities of two classes, quarter-wave (β=0.041 an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bbd64d73f36a0f73a0465a6fd399037c
Autor:
Miller, Samuel, Ao, Hiroyuki, Bird, Brian, Bullock, Benjamin, Bultman, Nathan, Casagrande, Fabio, Compton, Chris, Curtin, John, Elliott, Kyle, Facco, Alberto, Ganni, Venkatarao, Grender, Ian, Hartung, Walter, Hulbert, Jeffrey, Kelly, Michael, Kim, Sang-Hoon, Manwiller, Peter, Metzgar, Ethan, Morris, Dan, Ostroumov, Peter, Popielarski, John, Popielarski, Laura, Reaume, Marc, Saito, Kenji, Shuptar, Mark, Simon, Justin, Tousignant, Bryan, Victory, Daniel, Wei, Jie, Wenstrom, John, Wiseman, Mark, Witgen, Ken, Xu, Mengxin, Xu, Ting
The superconducting driver linac for the Facility for Rare Isotope Beams (FRIB) requires the production of 46 cryomodules. Design is complete on all six cryomodule types which utilize four superconducting radio frequency (SRF) cavity designs and supe
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::0e1ec7ae2dc51dc138d1b151bb69cb8b
Autor:
Ao, Hiroyuki, Bird, Brian, Bultman, Nathan, Casagrande, Fabio, Compton, Chris, Davidson, Kelly, Elliott, Kyle, Facco, Alberto, Ganni, Venkatarao, Ganshyn, Andrei, Gibson, Paul, Grender, Ian, Hartung, Walter, Hodges, Leslie, Holland, Kent, Hussain, Aftab, Ikegami, Masanori, Jones, Shelly, Knudsen, Peter, Laxdal, Robert, Lidia, Steven, Malloch, Ian, Metzgar, Ethan, Miller, Samuel, Morris, Dan, Ostroumov, Peter, Popielarski, John, Popielarski, Laura, Reaume, Marc, Russo, Thomas, Saito, Kenji, Shuptar, Mark, Stanley, Stephen, Stark, Sergey, Victory, Daniel, Wei, Jie, Wenstrom, John, Wiseman, Mark, Xu, Mengxin, Xu, Ting, Xu, Ying, Yamazaki, Yoshishige, Zhao, Qiang, Zhao, Shen
The Facility for Rare Isotope Beams (FRIB) driver linac is to accelerate all the stable ion beams from proton to uranium beyond 200 MeV/u with beam powers up to 400 kW, which will be the first large-scale, CW SRF ion linac. The beam commissioning of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::809b73ea305681a31d7d0ea96ebb70ee