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Design of the Photon Collimators for the ILC Positron Helical Undulator.

Research output: Working paper

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Standard

Design of the Photon Collimators for the ILC Positron Helical Undulator. / Bungau, A. B.; Bailey, I. R.; Baynham, E. et al.
2008.

Research output: Working paper

Harvard

Bungau, AB, Bailey, IR, Baynham, E, Bradshaw, TW, Brummitt, A, Carr, FS, Clarke, JA, Collomb, NA, Dainton, J, Hartin, AF, Hesselbach, S, Hock, KM, Jenner, LJ, Lintern, A, Malyshev, OB, Malysheva, LI, Moortgat-Pick, GA, Rochford, J, Ryder, NC, Scott, DJ & Zang, L 2008 'Design of the Photon Collimators for the ILC Positron Helical Undulator.'. <http://www.eurotev.org/>

APA

Bungau, A. B., Bailey, I. R., Baynham, E., Bradshaw, T. W., Brummitt, A., Carr, F. S., Clarke, J. A., Collomb, N. A., Dainton, J., Hartin, A. F., Hesselbach, S., Hock, K. M., Jenner, L. J., Lintern, A., Malyshev, O. B., Malysheva, L. I., Moortgat-Pick, G. A., Rochford, J., Ryder, N. C., ... Zang, L. (2008). Design of the Photon Collimators for the ILC Positron Helical Undulator. http://www.eurotev.org/

Vancouver

Bungau AB, Bailey IR, Baynham E, Bradshaw TW, Brummitt A, Carr FS et al. Design of the Photon Collimators for the ILC Positron Helical Undulator. 2008 Aug 10.

Author

Bibtex

@techreport{ce786bbd2e3e4469ac3dabbdf34a5af3,
title = "Design of the Photon Collimators for the ILC Positron Helical Undulator.",
abstract = "A number of photon collimators are placed inside the helical undulator to protect the cold surfaces of the vacuum vessel from being hit by the photons and thus achieving the baseline pressure requirement. Computer simulations were run in order to determine the energy deposition and instantaneous temperature rise in these collimators and various material candidates were studied. This paper presents the status of the simulation.",
author = "Bungau, {A. B.} and Bailey, {I. R.} and E. Baynham and Bradshaw, {T. W.} and A. Brummitt and Carr, {F. S.} and Clarke, {J. A.} and Collomb, {N. A.} and J. Dainton and Hartin, {A. F.} and S. Hesselbach and Hock, {K. M.} and Jenner, {L. J.} and A. Lintern and Malyshev, {O. B.} and Malysheva, {L. I.} and Moortgat-Pick, {G. A.} and J. Rochford and Ryder, {N. C.} and Scott, {D. J.} and L. Zang",
year = "2008",
month = aug,
day = "10",
language = "English",
type = "WorkingPaper",

}

RIS

TY - UNPB

T1 - Design of the Photon Collimators for the ILC Positron Helical Undulator.

AU - Bungau, A. B.

AU - Bailey, I. R.

AU - Baynham, E.

AU - Bradshaw, T. W.

AU - Brummitt, A.

AU - Carr, F. S.

AU - Clarke, J. A.

AU - Collomb, N. A.

AU - Dainton, J.

AU - Hartin, A. F.

AU - Hesselbach, S.

AU - Hock, K. M.

AU - Jenner, L. J.

AU - Lintern, A.

AU - Malyshev, O. B.

AU - Malysheva, L. I.

AU - Moortgat-Pick, G. A.

AU - Rochford, J.

AU - Ryder, N. C.

AU - Scott, D. J.

AU - Zang, L.

PY - 2008/8/10

Y1 - 2008/8/10

N2 - A number of photon collimators are placed inside the helical undulator to protect the cold surfaces of the vacuum vessel from being hit by the photons and thus achieving the baseline pressure requirement. Computer simulations were run in order to determine the energy deposition and instantaneous temperature rise in these collimators and various material candidates were studied. This paper presents the status of the simulation.

AB - A number of photon collimators are placed inside the helical undulator to protect the cold surfaces of the vacuum vessel from being hit by the photons and thus achieving the baseline pressure requirement. Computer simulations were run in order to determine the energy deposition and instantaneous temperature rise in these collimators and various material candidates were studied. This paper presents the status of the simulation.

M3 - Working paper

BT - Design of the Photon Collimators for the ILC Positron Helical Undulator.

ER -