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ATF2 Proposal: v. 2

For achieving the high luminosity required at the International Linear Collider (ILC), it is critical to focus the beams to nanometer size with the ILC Beam Delivery System (BDS), and to maintain the beam collision with a nanometer-scale stability. To establish the technologies associated with this...

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Detalles Bibliográficos
Autores principales: Grishanov, B.I., Logachev, P., Podgorny, F., Telnov, V., Angal-Kalinin, D., Jones, J., Kalinin, A., Napoly, O., Payet, J., Braun, Hans-Heinrich, Schulte, D., Zimmermann, F., Appleby, R., Barlow, R., Bailey, I., Jenner, L., Jones, R., Kourevlev, G., Elsen, E., Vogel, V., Walker, N., Solyak, N., Wendt, M., Takahasi, T., Gao, Jie, Liu, Weibin, Pei, Guo-Xi, Wang, Jiu-Qing, Delerue, N., Dixit, S., Howell, D., Reichold, A., Urner, D., Bosco, A., Agapov, I., Blair, G.A., Boorman, G., Carter, J., Driouichi, C., Price, M., Araki, S., Hayano, H., Higashi, Y., Honda, Y., Kanazawa, K., Kubo, K., Kume, T., Kuriki, M., Kuroda, S., Masuzawa, M., Naito, T., Okugi, T., Sugahara, R., Tauchi, T., Terunuma, N., Toge, N., Urakawa, J., Yamaoka, H., Yokoya, K., Iwashita, Y., Mihara, T., Alabau Pons, M., Bambade, P., Dadoun, O., Bolzon, B., Geffroy, N., Jeremie, A., Karyotakis, Y., Wolski, A., Gronberg, J., Boogert, S.T., Liapine, A., Malton, S., Miller, D.J., Wing, M., Kumada, M., Danagulian, S., Mtingwa, S., Torrence, E., Choi, J., Huang, J.Y., Kang, H.S., Kim, E.S., Kim, S., Ko, I.S., Burrows, P., Christian, G., Clarke, C., Hartin, A., Khah, H.D., Molloy, S., White, G., Bane, K., Brachmann, A., Himel, T., Markiewicz, Thomas W., Nelson, J., Nosochkov, Yu., Phinney, N., Pivi, M.T.F., Raubenheimer, T., Ross, M., Ruland, R., Seryi, Andrei, Spencer, Cherrill M., Tenenbaum, P., Woodley, M., Komamiya, S., Sanuki, T., Suehara, T.
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/926364
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author Grishanov, B.I.
Logachev, P.
Podgorny, F.
Telnov, V.
Angal-Kalinin, D.
Jones, J.
Kalinin, A.
Napoly, O.
Payet, J.
Braun, Hans-Heinrich
Schulte, D.
Zimmermann, F.
Appleby, R.
Barlow, R.
Bailey, I.
Jenner, L.
Jones, R.
Kourevlev, G.
Elsen, E.
Vogel, V.
Walker, N.
Solyak, N.
Wendt, M.
Takahasi, T.
Gao, Jie
Liu, Weibin
Pei, Guo-Xi
Wang, Jiu-Qing
Delerue, N.
Dixit, S.
Howell, D.
Reichold, A.
Urner, D.
Bosco, A.
Agapov, I.
Blair, G.A.
Boorman, G.
Carter, J.
Driouichi, C.
Price, M.
Araki, S.
Hayano, H.
Higashi, Y.
Honda, Y.
Kanazawa, K.
Kubo, K.
Kume, T.
Kuriki, M.
Kuroda, S.
Masuzawa, M.
Naito, T.
Okugi, T.
Sugahara, R.
Tauchi, T.
Terunuma, N.
Toge, N.
Urakawa, J.
Yamaoka, H.
Yokoya, K.
Iwashita, Y.
Mihara, T.
Alabau Pons, M.
Bambade, P.
Dadoun, O.
Bolzon, B.
Geffroy, N.
Jeremie, A.
Karyotakis, Y.
Wolski, A.
Gronberg, J.
Boogert, S.T.
Liapine, A.
Malton, S.
Miller, D.J.
Wing, M.
Kumada, M.
Danagulian, S.
Mtingwa, S.
Torrence, E.
Choi, J.
Huang, J.Y.
Kang, H.S.
Kim, E.S.
Kim, S.
Ko, I.S.
Burrows, P.
Christian, G.
Clarke, C.
Hartin, A.
Khah, H.D.
Molloy, S.
White, G.
Bane, K.
Brachmann, A.
Himel, T.
Markiewicz, Thomas W.
Nelson, J.
Nosochkov, Yu.
Phinney, N.
Pivi, M.T.F.
Raubenheimer, T.
Ross, M.
Ruland, R.
Seryi, Andrei
Spencer, Cherrill M.
Tenenbaum, P.
Woodley, M.
Komamiya, S.
Sanuki, T.
Suehara, T.
author_facet Grishanov, B.I.
Logachev, P.
Podgorny, F.
Telnov, V.
Angal-Kalinin, D.
Jones, J.
Kalinin, A.
Napoly, O.
Payet, J.
Braun, Hans-Heinrich
Schulte, D.
Zimmermann, F.
Appleby, R.
Barlow, R.
Bailey, I.
Jenner, L.
Jones, R.
Kourevlev, G.
Elsen, E.
Vogel, V.
Walker, N.
Solyak, N.
Wendt, M.
Takahasi, T.
Gao, Jie
Liu, Weibin
Pei, Guo-Xi
Wang, Jiu-Qing
Delerue, N.
Dixit, S.
Howell, D.
Reichold, A.
Urner, D.
Bosco, A.
Agapov, I.
Blair, G.A.
Boorman, G.
Carter, J.
Driouichi, C.
Price, M.
Araki, S.
Hayano, H.
Higashi, Y.
Honda, Y.
Kanazawa, K.
Kubo, K.
Kume, T.
Kuriki, M.
Kuroda, S.
Masuzawa, M.
Naito, T.
Okugi, T.
Sugahara, R.
Tauchi, T.
Terunuma, N.
Toge, N.
Urakawa, J.
Yamaoka, H.
Yokoya, K.
Iwashita, Y.
Mihara, T.
Alabau Pons, M.
Bambade, P.
Dadoun, O.
Bolzon, B.
Geffroy, N.
Jeremie, A.
Karyotakis, Y.
Wolski, A.
Gronberg, J.
Boogert, S.T.
Liapine, A.
Malton, S.
Miller, D.J.
Wing, M.
Kumada, M.
Danagulian, S.
Mtingwa, S.
Torrence, E.
Choi, J.
Huang, J.Y.
Kang, H.S.
Kim, E.S.
Kim, S.
Ko, I.S.
Burrows, P.
Christian, G.
Clarke, C.
Hartin, A.
Khah, H.D.
Molloy, S.
White, G.
Bane, K.
Brachmann, A.
Himel, T.
Markiewicz, Thomas W.
Nelson, J.
Nosochkov, Yu.
Phinney, N.
Pivi, M.T.F.
Raubenheimer, T.
Ross, M.
Ruland, R.
Seryi, Andrei
Spencer, Cherrill M.
Tenenbaum, P.
Woodley, M.
Komamiya, S.
Sanuki, T.
Suehara, T.
author_sort Grishanov, B.I.
collection CERN
description For achieving the high luminosity required at the International Linear Collider (ILC), it is critical to focus the beams to nanometer size with the ILC Beam Delivery System (BDS), and to maintain the beam collision with a nanometer-scale stability. To establish the technologies associated with this ultra-high precision beam handling, it has been proposed to implement an ILC-like final focus optics in an extension of the existing extraction beamline of ATF at KEK. The ATF is considered to be the best platform for this exercise, since it provides an adequate ultra-low emittance electron beam in a manner dedicated to the development of ILC. The two major goals for this facility, called ATF2, are : (A) Achievement of a 37 nm beam size, and (B) control of beam position down to 2 nm level. The scientific justification for the ATF2 project and its technical design have been described in Volume 1 of the ATF2 Proposal [1]. We present here Volume 2 of the ATF2 Proposal, in which we present specifics of the construction plans and the group organization to execute the research programs at ATF2. The sections in this report have been authored by relevant ATF2 subgroups within the International ATF Collaboration. The time line of the project is described in Section 2. Section 3 discuss the structure of the international collaboration. Sections 4 and 5 discuss budget considerations, which are presented as well as the design and construction tasks to be shared by the internationalcollaboration at ATF2. Concluding remarks have been contributed by Dr. Ewan Paterson, Chair of the International Collaboration Board of the ATF collaboration.
id cern-926364
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-9263642023-10-07T04:42:23Zhttp://cds.cern.ch/record/926364engGrishanov, B.I.Logachev, P.Podgorny, F.Telnov, V.Angal-Kalinin, D.Jones, J.Kalinin, A.Napoly, O.Payet, J.Braun, Hans-HeinrichSchulte, D.Zimmermann, F.Appleby, R.Barlow, R.Bailey, I.Jenner, L.Jones, R.Kourevlev, G.Elsen, E.Vogel, V.Walker, N.Solyak, N.Wendt, M.Takahasi, T.Gao, JieLiu, WeibinPei, Guo-XiWang, Jiu-QingDelerue, N.Dixit, S.Howell, D.Reichold, A.Urner, D.Bosco, A.Agapov, I.Blair, G.A.Boorman, G.Carter, J.Driouichi, C.Price, M.Araki, S.Hayano, H.Higashi, Y.Honda, Y.Kanazawa, K.Kubo, K.Kume, T.Kuriki, M.Kuroda, S.Masuzawa, M.Naito, T.Okugi, T.Sugahara, R.Tauchi, T.Terunuma, N.Toge, N.Urakawa, J.Yamaoka, H.Yokoya, K.Iwashita, Y.Mihara, T.Alabau Pons, M.Bambade, P.Dadoun, O.Bolzon, B.Geffroy, N.Jeremie, A.Karyotakis, Y.Wolski, A.Gronberg, J.Boogert, S.T.Liapine, A.Malton, S.Miller, D.J.Wing, M.Kumada, M.Danagulian, S.Mtingwa, S.Torrence, E.Choi, J.Huang, J.Y.Kang, H.S.Kim, E.S.Kim, S.Ko, I.S.Burrows, P.Christian, G.Clarke, C.Hartin, A.Khah, H.D.Molloy, S.White, G.Bane, K.Brachmann, A.Himel, T.Markiewicz, Thomas W.Nelson, J.Nosochkov, Yu.Phinney, N.Pivi, M.T.F.Raubenheimer, T.Ross, M.Ruland, R.Seryi, AndreiSpencer, Cherrill M.Tenenbaum, P.Woodley, M.Komamiya, S.Sanuki, T.Suehara, T.ATF2 Proposal: v. 2Accelerators and Storage RingsFor achieving the high luminosity required at the International Linear Collider (ILC), it is critical to focus the beams to nanometer size with the ILC Beam Delivery System (BDS), and to maintain the beam collision with a nanometer-scale stability. To establish the technologies associated with this ultra-high precision beam handling, it has been proposed to implement an ILC-like final focus optics in an extension of the existing extraction beamline of ATF at KEK. The ATF is considered to be the best platform for this exercise, since it provides an adequate ultra-low emittance electron beam in a manner dedicated to the development of ILC. The two major goals for this facility, called ATF2, are : (A) Achievement of a 37 nm beam size, and (B) control of beam position down to 2 nm level. The scientific justification for the ATF2 project and its technical design have been described in Volume 1 of the ATF2 Proposal [1]. We present here Volume 2 of the ATF2 Proposal, in which we present specifics of the construction plans and the group organization to execute the research programs at ATF2. The sections in this report have been authored by relevant ATF2 subgroups within the International ATF Collaboration. The time line of the project is described in Section 2. Section 3 discuss the structure of the international collaboration. Sections 4 and 5 discuss budget considerations, which are presented as well as the design and construction tasks to be shared by the internationalcollaboration at ATF2. Concluding remarks have been contributed by Dr. Ewan Paterson, Chair of the International Collaboration Board of the ATF collaboration.The two major goals for this facility, called ATF2, are : (A) Achievement of a 37 nm beam size, and (B) control of beam position down to 2 nm level. The scientific justification for the ATF2 project and its technical design have been described in Volume 1 of the ATF2 Proposal. We present here Volume 2 of the ATF2 Proposal, in which we present specifics of the construction plans and the group organization to execute the research programs at ATF2.physics/0606194DESY-06-001CERN-AB-2006-004ILC-ASIA-2005-26JAI-2006-001KEK-REPORT-2005-9SLAC-R-796UT-ICEPP-05-04physics/0606194DESY-06-001DESY-2006-001ILC-ASIA-2005-26JAI-2006-001KEK-2005-9SLAC-R-796UT-ICEPP-2005-04oai:cds.cern.ch:9263642006-01-30
spellingShingle Accelerators and Storage Rings
Grishanov, B.I.
Logachev, P.
Podgorny, F.
Telnov, V.
Angal-Kalinin, D.
Jones, J.
Kalinin, A.
Napoly, O.
Payet, J.
Braun, Hans-Heinrich
Schulte, D.
Zimmermann, F.
Appleby, R.
Barlow, R.
Bailey, I.
Jenner, L.
Jones, R.
Kourevlev, G.
Elsen, E.
Vogel, V.
Walker, N.
Solyak, N.
Wendt, M.
Takahasi, T.
Gao, Jie
Liu, Weibin
Pei, Guo-Xi
Wang, Jiu-Qing
Delerue, N.
Dixit, S.
Howell, D.
Reichold, A.
Urner, D.
Bosco, A.
Agapov, I.
Blair, G.A.
Boorman, G.
Carter, J.
Driouichi, C.
Price, M.
Araki, S.
Hayano, H.
Higashi, Y.
Honda, Y.
Kanazawa, K.
Kubo, K.
Kume, T.
Kuriki, M.
Kuroda, S.
Masuzawa, M.
Naito, T.
Okugi, T.
Sugahara, R.
Tauchi, T.
Terunuma, N.
Toge, N.
Urakawa, J.
Yamaoka, H.
Yokoya, K.
Iwashita, Y.
Mihara, T.
Alabau Pons, M.
Bambade, P.
Dadoun, O.
Bolzon, B.
Geffroy, N.
Jeremie, A.
Karyotakis, Y.
Wolski, A.
Gronberg, J.
Boogert, S.T.
Liapine, A.
Malton, S.
Miller, D.J.
Wing, M.
Kumada, M.
Danagulian, S.
Mtingwa, S.
Torrence, E.
Choi, J.
Huang, J.Y.
Kang, H.S.
Kim, E.S.
Kim, S.
Ko, I.S.
Burrows, P.
Christian, G.
Clarke, C.
Hartin, A.
Khah, H.D.
Molloy, S.
White, G.
Bane, K.
Brachmann, A.
Himel, T.
Markiewicz, Thomas W.
Nelson, J.
Nosochkov, Yu.
Phinney, N.
Pivi, M.T.F.
Raubenheimer, T.
Ross, M.
Ruland, R.
Seryi, Andrei
Spencer, Cherrill M.
Tenenbaum, P.
Woodley, M.
Komamiya, S.
Sanuki, T.
Suehara, T.
ATF2 Proposal: v. 2
title ATF2 Proposal: v. 2
title_full ATF2 Proposal: v. 2
title_fullStr ATF2 Proposal: v. 2
title_full_unstemmed ATF2 Proposal: v. 2
title_short ATF2 Proposal: v. 2
title_sort atf2 proposal: v. 2
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/926364
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