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<title>XV Latin American Symposium on High Energy Physics</title>
<description>&lt;p&gt;The &lt;strong&gt;Latin American Symposium on High Energy Physics (SILAFAE)&lt;/strong&gt;&amp;nbsp;is an event with a tradition of over 25 years, that brings together the regional and international community of particle physics and related areas such as cosmology, gravitation and astroparticle physics. The conference has been the main regional hub for discussions on topics in the relevant fields, knowledge updates and the exploration of new ideas and perspectives towards the future. The event also promotes the expansion of regional and international cooperation as well as the professional development of young scientists and students.&lt;/p&gt;

&lt;p&gt;This is the 15th edition&amp;nbsp;of the SILAFAE series, which will&amp;nbsp;take place in Mexico City, Mexico, at the beautiful campus of &lt;a href="https://www.cinvestav.mx/"&gt;Cinvestav&lt;/a&gt;.&amp;nbsp;&lt;/p&gt;

&lt;p&gt;The conference format consists of a series of plenary and parallel talks covering a range of theoretical and experimental topics. An active posters session is also planned.&lt;/p&gt;

&lt;p&gt;The SILAFAE conference started in 1996 in M&amp;eacute;rida-Mexico, followed by editions in San Juan-Puerto Rico (1998), Cartagena de Indias-Colombia (2000), Aguas de Lindoia-Brazil (2002),&amp;nbsp;Lima-Peru (2004), Puerto Vallarta-Mexico (2006), San Carlos de Bariloche-Argentina (2009), Valpara&amp;iacute;so-Chile (2010), &lt;a href="https://www.ictp-saifr.org/2012-silafae-workshop/"&gt;S&amp;atilde;o Paulo-Brazil (2012)&lt;/a&gt;, Medell&amp;iacute;n-Colombia (2014), &lt;a href="https://ecfm.usac.edu.gt/silafae/"&gt;Antigua-Guatemala (2016) &lt;/a&gt;and&amp;nbsp;&lt;a href="https://indico.cern.ch/event/701855/"&gt;Lima-Peru (2018)&lt;/a&gt;.&amp;nbsp; The conference was cancelled in 2020 due to the Covid-19 pandemic but a&amp;nbsp;special, remote version&amp;nbsp;took place in 2021 in &lt;a href="http://www.ictp-saifr.org/silafae-xii-21/"&gt;virtual S&amp;atilde;o Paulo-Brazil&lt;/a&gt;. &lt;span style="background-color:rgba(0, 0, 0, 0); color:#000000"&gt;Returning in-person for the 2022 edition, the event took place in&lt;/span&gt; &lt;a href="https://indico.cern.ch/event/1151741/"&gt;Quito-Ecuador&lt;/a&gt;.&lt;/p&gt;
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<startDate>2024-11-04T08:00:00</startDate>
<endDate>2024-11-08T20:10:00</endDate>
<creationDate>2023-10-20T16:27:55</creationDate>
<modificationDate>2025-05-02T18:28:14</modificationDate>
<timezone>Mexico/General</timezone>
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  <name first="Pablo" middle="" last="Roig"></name>
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  <title>Dr.</title>
  <name first="Alejandro" middle="" last="Ayala"></name>
  <organization>Instituto de Ciencias Nucleares, UNAM</organization>
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  <name first="Alexis" middle="" last="Aguilar-Arevalo"></name>
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  <organization>Cinvestav</organization>
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  <title>Dr.</title>
  <name first="Myriam" middle="" last="Mondragon Ceballos"></name>
  <organization>Instituto de Fisica, UNAM</organization>
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  <organization>Departamento de Física, Cinvestav</organization>
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 <title>Temperature fluctuations of the medium formed in pp collisions</title>
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   <name first="Diana" middle="" last="Rosales Herrera"></name>
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   <name first="Diana" middle="" last="Rosales Herrera"></name>
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   <title>Dr.</title>
   <name first="Jhony Eredi" middle="" last="Ramírez Cancino"></name>
   <organization>Benemérita Universidad Autónoma de Puebla</organization>
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   <title>Dr.</title>
   <name first="J. Ricardo" middle="" last="Alvarado García"></name>
   <organization>Benemérita Universidad Autónoma de Puebla</organization>
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   <title>Dr.</title>
   <name first="Arturo" middle="" last="Fernandez Tellez"></name>
   <organization>Benemerita Universidad Autonoma de Puebla</organization>
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 <duration>00:15</duration>
 <abstract>The $p_T$ spectrum of the charged particles produced in pp collisions can be described through the fragmentation of color strings by assuming the Schwinger mechanism with heavy-tailed distributions describing the string tension fluctuations.  In particular, we discuss the string tension fluctuations described by the q-Gaussian distribution, and the one derived for the QCD-based Hagedorn function. As a result of the latter, the physics involved in the Hagedorn function can be understood under the string fragmentation scheme. Consequently, the system created in the collision departs from the thermal description, which is corroborated by deriving the temperature fluctuations of these approaches. We found that temperature fluctuations are a local property occurring in a small part of the system.</abstract>
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