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- Indico style - inline minutes
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Dear colleagues,
Registration is now open for the the international workshop on future linear colliders (LCWS2016), organized by the Linear Collider Collaboration, to be held in the city of Morioka, Iwate prefecture, Japan, from December 5 to 9, 2016.
With the Japanese government currently evaluating the cases for the International Linear Collider (ILC), the workshop is positioned at a critical time for the future of accelerator-based particle physics.
The workshop will update the physics cases for linear electron-positron colliders taking into account the latest results from LHC, and it will review the progress in the detector and accelerator designs for both ILC and CLIC.
The venue is close to the candidate site for the ILC, and an excursion is planned to visit the site and the surrounding area.
The workshop web page is found at http://lcws2016.sgk.iwate-u.ac.jp
which is to be updated as the program evolves.
Looking forward to see you in Morioka,
Chair: Local Organization Committee Shinya Narita
Co-chairs: International Organizing Committee Mike Harrison, Harry Weerts, Hitoshi Yamamoto
LOC Chair: Shinya Narita
Remote connection info. for ATF;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Invited overview talk
Remote connection info. for Source;
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Top_QCD_LCWS16 Join
Name
Top_QCD_LCWS16
Description
Top QCD Session at LCWS
Extension
10593382
Owner
Roman Poeschl
Auto-join URL:
https://vidyoportal.cern.ch/join/sP1dyycrte
Useful links
Phone numbers
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Superconducting Radio Frequency (SCRF) is an enabling technology for many future applications including linear and circular colliders, free electron lasers and radioactive isotope facilities.
Recently an initiative has been launched in the USA and Japan with the aim of reducing the cost of SCRF.
In view of the worldwide interest and the limited resources available for R&D on SRF and its associated technologies, it is important to have a clear view of the priorities in each of the laboratories participating in SCRF R&Ds on a timescale of the next 2-3 years.
We would therefore like to invite you to a mini-workshop on the occasion of the Linear Collider Workshop in Morioka, Japan during the week of 5th December 2016.
The Workshop will take place on Tuesday 6th December. The R&D plans to be discussed include plans for SCRF cavity design, processing and production, tuner and coupler design fabrication, and the design and development of high-efficiency klystrons and Marx modulators.
Workshop Organizer / Convener: L. Evans / A, Yamamoto
Remote Access Information (using the CERN Vidyo service) :
Please join the meeting by clicking this link:
https://vidyoportal.cern.ch/join/sSf8EFpWy3Af
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 1010442045 in order to join.
Remote connection info. for ATF;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Remote connection info. for Source;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Superconducting Radio Frequency (SCRF) is an enabling technology for many future applications including linear and circular colliders, free electron lasers and radioactive isotope facilities.
Recently an initiative has been launched in the USA and Japan with the aim of reducing the cost of SCRF.
In view of the worldwide interest and the limited resources available for R&D on SRF and its associated technologies, it is important to have a clear view of the priorities in each of the laboratories participating in SCRF R&Ds on a timescale of the next 2-3 years.
We would therefore like to invite you to a mini-workshop on the occasion of the Linear Collider Workshop in Morioka, Japan during the week of 5th December 2016.
The Workshop will take place on Tuesday 6th December. The R&D plans to be discussed include plans for SCRF cavity design, processing and production, tuner and coupler design fabrication, and the design and development of high-efficiency klystrons and Marx modulators.
Workshop Organizer / Convener: L. Evans / A, Yamamoto
Remote Access Information (using the CERN Vidyo service) :
Please join the meeting by clicking this link:
https://vidyoportal.cern.ch/join/sSf8EFpWy3Af
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 1010442045 in order to join.
Remote connection info. for ATF-ICB;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Remote connection info. for Beam-Dynamics;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Remote connection info. for MDI/Integration/Polarization/CRWG/ADI/BDS;
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remote presentation
A new timeline of ILD integration in which the solenoid full current test can be done before barrel calorimeter installation will be presented in this talk
In order to fully exploit the physics potential of the International Linear Collider (ILC), it is important to provide a precise determination of the actual beam polarization at the permille-level. This can only be achieved by combining the fast time-resolved measurements of the laser-Compton polarimeters with an absolute scale calibration of the luminosity-weighted average polarization at the interaction point (IP) calculated from collision data.
The time-resolved polarization is measured by two polarimeters per beam from the differential Compton cross section of a particle bunch with a circular polarized laser. However, those polarimeters are 1.65km before and 150m after the IP. Thus, the measurement has to be extrapolated from the polarimeters to the IP via spin tracking, considering all uncertainties including beam collision effects. In the past, the absolute scale calibration has been studied for different, well known standard model processes individually.
In this study, a unified approach will be presented for the first time, which combines the total and differential cross section measurements from all suitable processes, as well as the expected constraints from the polarimeters considering effects of the spin tracking. Hereby, the statistical and systematical uncertainties are taken into account, including their correlations.
This study shows that a fast spin flip frequency is desired even with a non-perfect helicity reversal because a fast spin flip frequency reduces the systematic uncertainty, while a non-perfect helicity reversal is now compensated within the unified approach. The final goal is to provide a realistic estimated of the luminosity-weighted average polarization at the IP to be used in the physic analyses.
Remote connection info. for Source;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Superconducting Radio Frequency (SCRF) is an enabling technology for many future applications including linear and circular colliders, free electron lasers and radioactive isotope facilities.
Recently an initiative has been launched in the USA and Japan with the aim of reducing the cost of SCRF.
In view of the worldwide interest and the limited resources available for R&D on SRF and its associated technologies, it is important to have a clear view of the priorities in each of the laboratories participating in SCRF R&Ds on a timescale of the next 2-3 years.
We would therefore like to invite you to a mini-workshop on the occasion of the Linear Collider Workshop in Morioka, Japan during the week of 5th December 2016.
The Workshop will take place on Tuesday 6th December. The R&D plans to be discussed include plans for SCRF cavity design, processing and production, tuner and coupler design fabrication, and the design and development of high-efficiency klystrons and Marx modulators.
Workshop Organizer / Convener: L. Evans / A, Yamamoto
Remote Access Information (using the CERN Vidyo service) :
Please join the meeting by clicking this link:
https://vidyoportal.cern.ch/join/sSf8EFpWy3Af
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 1010442045 in order to join.
Remote connection info. for Beam-Dynamics;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Superconducting Radio Frequency (SCRF) is an enabling technology for many future applications including linear and circular colliders, free electron lasers and radioactive isotope facilities.
Recently an initiative has been launched in the USA and Japan with the aim of reducing the cost of SCRF.
In view of the worldwide interest and the limited resources available for R&D on SRF and its associated technologies, it is important to have a clear view of the priorities in each of the laboratories participating in SCRF R&Ds on a timescale of the next 2-3 years.
We would therefore like to invite you to a mini-workshop on the occasion of the Linear Collider Workshop in Morioka, Japan during the week of 5th December 2016.
The Workshop will take place on Tuesday 6th December. The R&D plans to be discussed include plans for SCRF cavity design, processing and production, tuner and coupler design fabrication, and the design and development of high-efficiency klystrons and Marx modulators.
Workshop Organizer / Convener: L. Evans / A, Yamamoto
Remote Access Information (using the CERN Vidyo service) :
Please join the meeting by clicking this link:
https://vidyoportal.cern.ch/join/sSf8EFpWy3Af
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 1010442045 in order to join.
Remote connection info. for Source;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Remote Connection info. for ILC-SRF session;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=sSf8EFpWy3Af
We will try to provide a Vidyo connection (but cannot gurantee that this will work). The vidyo link is here
Remote connection info. for Source;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Remote Connection info. for ILC-SRF session;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=sSf8EFpWy3Af
We will try to provide a Vidyo connection (but cannot gurantee that this will work). The vidyo link is here
Remote connection info. for Source;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Vidyo Room:
Please join the meeting by clicking this link: https://vidyoportal.cern.ch/join/RAfhwSNOO4
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 10591969 in order to join.
Remote connection info. for CFS;
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Remote connection info. for CRWG+ADI;
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invited overview talk
invited overview talk
Vidyo Room:
Please join the meeting by clicking this link: https://vidyoportal.cern.ch/join/RAfhwSNOO4
If you want to join by phone, please use one of the phone numbers listed in the link below:
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and enter the meeting extension 10591969 in order to join.
Remote connection info. for CFS+cryogenics;
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Remote connection info. for CRWG+ADI;
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Top_QCD_LCWS16 Join
Name
Top_QCD_LCWS16
Description
Top QCD Session at LCWS
Extension
10593382
Owner
Roman Poeschl
Auto-join URL:
https://vidyoportal.cern.ch/join/sP1dyycrte
Useful links
Phone numbers
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
invited overview talk
Remote connection info. for MDI/Integration/Polarization/CRWG/ADI/BDS;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Vidyo Room:
Please join the meeting by clicking this link: https://vidyoportal.cern.ch/join/RAfhwSNOO4
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 10591969 in order to join.
invited overview talk
Remote connection info. for MDI/Integration/Polarization/CRWG/ADI/BDS;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Remote connection info. for ILC-TB;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA
Vidyo Room:
Please join the meeting by clicking this link: https://vidyoportal.cern.ch/join/RAfhwSNOO4
If you want to join by phone, please use one of the phone numbers listed in the link below:
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
and enter the meeting extension 10591969 in order to join.
Remote connection info. for CRWG+ADI;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
Top_QCD_LCWS16 Join
Name
Top_QCD_LCWS16
Description
Top QCD Session at LCWS
Extension
10593382
Owner
Roman Poeschl
Auto-join URL:
https://vidyoportal.cern.ch/join/sP1dyycrte
Useful links
Phone numbers
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
Remote connection info. for CRWG+ADI;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=B1qeE9YYtZ82tuoP7BQDVJOX8ws
invited overview talk
invited overview talk
invited overview talk
Top_QCD_LCWS16 Join
Name
Top_QCD_LCWS16
Description
Top QCD Session at LCWS
Extension
10593382
Owner
Roman Poeschl
Auto-join URL:
https://vidyoportal.cern.ch/join/sP1dyycrte
Useful links
Phone numbers
http://information-technology.web.cern.ch/services/fe/howto/users-join-vidyo-meeting-phone
Remote connection info. for CMB;
https://vidyoportal.cern.ch/flex.html?roomdirect.html&key=vrnNPLU2dK6z8s9mWD0Xt6RRwQA