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<category>DPyC SMF</category>
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<announcer>
 <user>
  <title>Dr.</title>
  <name first="Pablo" middle="" last="Roig"></name>
  <organization>Cinvestav</organization>
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<title>RADPyC2026</title>
<description>The Division of Particles and Fields of the Mexican Physical Society (DPyC-SMF) organizes every year the Annual Meeting (RADPyC). This space is dedicated mainly for the exposure of results of graduate students and young researchers working in high energy physics and includes some review talks on the hot topics of the field. This year the meeting will be held in Auditorio José Ádem, Cinvestav, Mexico City, México. The scientific programme will consist of invited and contributed talks, and a poster session. It will begin in the morning of Wednesday 17 June and end before lunch on Friday 19 June.

We will have the following invited talks:
 
- Ana Colmenero, HAWC (UMSNH)

- Jens Erler, The EW SM and constraints on NP (Mainz, PRISMA)

- Iván Martínez Soler, Neutrino physics (Durham Univ.)

- Cristina Oropeza, CMS (Ibero)

- Antonio Ortiz, ALICE (ICN-UNAM)

- Gabriel Palacios, Accelerator physics (UNAM)

- Antonio Pich, Flavor physics (IFIC)

- Pedro Podesta, Belle-II (UAS)

- Selomit Ramírez, QCD, Loop Tree Duality, Quantum Computing (UAS)

- Saúl Ramos, Flavor physics from a top-down perspective (IF-UNAM)

- Alfredo Raya, NICA (UMSNH)

- Eric Vázquez, DM-neutrinos (exp.) (IF-UNAM)


The whole event can be followed by Zoom:

https://us02web.zoom.us/j/85815121456?pwd=t1JWdqhgarEQRyewmXIEzNlkIcqU8a.1

(858 1512 1456 &amp; 044752).

Due to recent internet security problems at Cinvestav it will NOT be broadcasted via the DPyC facebook account (facebook is currently blocked on our premises).</description>
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<startDate>2026-06-17T09:00:00</startDate>
<endDate>2026-06-19T14:30:00</endDate>
<creationDate>2026-03-23T09:50:55</creationDate>
<modificationDate>2026-06-19T17:51:55</modificationDate>
<timezone>Mexico/General</timezone>
<chair>
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  <name first="Gabriel" middle="" last="Lopez Castro"></name>
  <organization>cinvestav</organization>
  <emailHash>f09241183e84638d226a8885656239cd</emailHash>
 </user>
 <user>
  <title>Dr.</title>
  <name first="Omar" middle="" last="Miranda"></name>
  <organization>Cinvestav</organization>
  <emailHash>6be00aeecce15d4b2547496f45352003</emailHash>
 </user>
 <user>
  <title>Prof.</title>
  <name first="Eduard" middle="" last="De La Cruz Burelo"></name>
  <organization>CINVESTAV-IPN Mexico</organization>
  <emailHash>207484e6583dd9c0c1af2f52ce04fdd8</emailHash>
 </user>
 <user>
  <title>Dr.</title>
  <name first="Pablo" middle="" last="Roig"></name>
  <organization>Cinvestav</organization>
  <emailHash>ea481e58ca9c64e14d7982cb66bcd604</emailHash>
 </user>
 <user>
  <title>Dr.</title>
  <name first="Pablo" middle="" last="Roig"></name>
  <organization>Cinvestav</organization>
  <emailHash>3cd3ab69a079e614c15e4c750e7d3d60</emailHash>
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 <user>
  <title>Dr.</title>
  <name first="Haydee" middle="" last="Hernandez-Arellano"></name>
  <organization>BUAP</organization>
  <emailHash>5848375cb8b0db28e94350f19dcb744f</emailHash>
 </user>
 <user>
  <title>Prof.</title>
  <name first="Isabel" middle="" last="Pedraza"></name>
  <organization>Benemérita Universidad Autónoma de Puebla</organization>
  <emailHash>65efd11437264d48aa1f7486255a57bc</emailHash>
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 <title>Plasmon damping in a charged Bose-Einstein condensate model</title>
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   <title>Prof.</title>
   <name first="Sarira" middle="" last="Sahu"></name>
   <organization>ICN, UNAM</organization>
   <emailHash>da1c1375d2cfe70e9ee406be1b0aabab</emailHash>
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  <user>
   <title>Prof.</title>
   <name first="Sarira" middle="" last="Sahu"></name>
   <organization>ICN, UNAM</organization>
   <emailHash>da1c1375d2cfe70e9ee406be1b0aabab</emailHash>
  </user>
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 <coAuthors>
  <user>
   <title>Prof.</title>
   <name first="Jose F." middle="" last="Nieves"></name>
   <organization>University of Puerto Rico, Río Piedras, Puerto Rico</organization>
   <emailHash>da7901b70fbd5bcbf365f9eb963f10c1</emailHash>
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 <duration>00:15</duration>
 <abstract>In this work we consider the calculation of the imaginary part of the dispersion relations of the prop-
agating modes in a model of a charged scalar Bose-Einstein (BE) condensate, as well as the contribution
to the imaginary part of the longitudinal component of the photon polarization tensor and the dielectric
constant. In that model, two modes correspond to the transverse photon polarizations, while the other
two modes are combinations of the longitudinal photon and the massive scalar field, which we denote
as the (±) modes. The dispersion relations of the transverse modes have the usual form for transverse
photons in a plasma, and we do not consider here any further. In a previous work we determined the real
part of the dispersion relations of the (±) modes, as well as the real part of the longitudinal component
of of polarization tensor and dielectric constant, which have some unique features. In the appropriate
limit, those results reproduce the results obtained for the dielectric constant and dispersion relation in
non-relativistic models of the BE condensation of charged scalars. Here we determine, in the same model,
their imaginary part. The results can be useful in physical contexts involving the electrodynamics of a
charged scalar BE condensate, and can serve as benchmark results for further exploration.</abstract>
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