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  <title>Mr.</title>
  <name first="david" middle="" last="bourillot"></name>
  <organization>MCM-Services</organization>
  <email>david.bourillot@mcm-services.com</email>
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<supportEmail caption="Support">lcws06@tifr.res.in</supportEmail>
<title>LCWS06 (Linear Collider Workshop 2006)</title>
<description>LCWS is a workshop organised at IISc, Bangalore to discuss accelerator and detector designs and the physics potential of High Energy Linear Colliders.
	
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 <name>Indian Institute of Science</name>
 <address>C. V. Raman Road,
Bangalore 560012,
India</address>
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<startDate>2006-03-08T08:00:00</startDate>
<endDate>2006-03-13T18:00:00</endDate>
<creationDate>2006-01-03T23:33:10</creationDate>
<modificationDate>2012-03-01T14:06:43</modificationDate>
<timezone>Europe/Zurich</timezone>
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 <title>Associated Single Photons as Signals for a Doubly Charged Scalar at Linear e- e- Colliders</title>
 <speakers>
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   <title>Dr.</title>
   <name first="SANTOSH" middle="" last="RAI"></name>
   <organization>Harish-Chandra Research Institute</organization>
   <email>skrai@mri.ernet.in</email>
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   <title>Dr.</title>
   <name first="SANTOSH" middle="" last="RAI"></name>
   <organization>Harish-Chandra Research Institute</organization>
   <email>skrai@mri.ernet.in</email>
  </user>
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   <title>Prof.</title>
   <name first="BISWARUP" middle="" last="MUKHOPADHYAYA"></name>
   <organization>Harish-Chandra Research Institute</organization>
   <email>biswarup@mri.ernet.in</email>
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 <location>
  <name>Indian Institute of Science</name>
  <address>C. V. Raman Road,
Bangalore 560012,
India</address>
  <room>Hall A</room>
 </location>
 <startDate>2006-03-12T14:40:00</startDate>
 <endDate>2006-03-12T15:00:00</endDate>
 <duration>00:20</duration>
 <abstract>Doubly charged scalars, predicted in many models having exotic Higgs representations,
can in general have lepton-number violating (LFV) couplings. The basis of most
searches for this charged scalar has been to look for its direct production and its
subsequent decay to like-sign final state leptons. In this work we show that by using
an associated monoenergetic final state photon seen at a future linear e-e- collider,
we can have a clear and distinct signature for a doubly-charged resonance and also
determine its mass rather precisely. We also estimate the strength of the Delta L=2
coupling which can be probed in this way at sqrt{s}=1 TeV, as a function of the
recoil mass of the doubly-charged scalar.</abstract>
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