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{{Infobox laboratory
| name = Laboratório Nacional de Luz Síncroton<br /><small>Brazilian SynchrotonSynchrotron Light Laboratory</small>
| motto =
| logo =
| logo_size =
| image = 30 Anos Laboratório SincrotronMinistro_participa_da_inauguração_do_acelerador_de_partículas_Sirius._%2830970744907%29.jpg
| caption = ViewThe ofSirius LNLSparticle accelerator building completed in November 2018
| established = 1997
| director = [[Harry Westfahl Jr.]]<ref>{{cite web|title=Diretoria|url=http://cnpem.br/diretoria/|work=CNPEM|access-date=2021-01-29|language=pt-br|archive-date=2021-02-25|archive-url=https://web.archive.org/web/20210225142435/https://cnpem.br/diretoria/|url-status=dead}}</ref>
| director = [[Yves Petroff]]
| city = [[Campinas]], [[São Paulo (state)|São Paulo]], Brazil
| coordinates = {{coord|22|48|14|S|47|03|14|W}}
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'''Laboratório Nacional de Luz Síncrotron''' ({{IPA-pt|laboɾɐˈtɔɾju nɐsjoˈnaw dʒi ˈlus ˈsĩkɾotɾõ}}; '''LNLS''') is the Brazilian [[Synchrotron Light]] Laboratory,<ref>{{Cite web|url=https://www.lnls.cnpem.br/the-lnls/history-of-the-synchrotron-light-sources/|title=History of the Synchrotron Light Sources – LNLS|website=www.lnls.cnpem.br}}</ref> a research institution on [[physics]], [[chemistry]], [[material science]] and [[life sciences]]. It is located in the city of [[Campinas]], sub-district of [[Barão Geraldo]], state of [[São Paulo (state)|São Paulo]], [[Brazil]].
 
The Center, which is operated by the Brazilian Center of Research in Energy and Materials ([[UniversidadeCNPEM)<ref>{{Cite Estadualweb de|title=The Brazilian Synchrotron Light Laboratory – LNLS Campinas#CNPEM|CNPEM]])url=https://lnls.cnpem.br/about/ |access-date=2023-05-08 |website=lnls.cnpem.br}}</ref> under a contract with the [[Conselho Nacional de Desenvolvimento Científico e Tecnológico|National Research Council]] (CNPq) and the [[Ministry of Science and Technology (Brazil)|Ministry of Science and Technology]] of [[Brazil]], has the only particle accelerator (a [[synchrotron]]) in Latin America, which was designed and built in Brazil by a team of physicists, technicians and engineers.
 
Currently, the Brazilian Synchrotron has 156 different [[beamline]]s<ref>{{Cite web |title=Accelerator Commissioning during 2021 and 2022 – LNLS |url=https://lnls.cnpem.br/sirius-updates/accelerator-commissioning-during-2021-and-2022/ |access-date=2023-05-08 |website=lnls.cnpem.br}}</ref> in operation for its user community, covering energies ranging from a few [[electronvolt]]s to tens of kiloelectronvolts. The uses include:
*X-Ray Nanoscopy <ref>{{Cite web |title=Carnaúba – LNLS |url=https://lnls.cnpem.br/facilities/carnauba-en/ |access-date=2023-05-08 |website=lnls.cnpem.br |language=en-US}}</ref>
*X-Ray Diffraction
*Coherent and Time-resolsed X-ray Scattering <ref>{{Cite web |title=Cateretê – LNLS |url=https://lnls.cnpem.br/facilities/caterete-en/ |access-date=2023-05-08 |website=lnls.cnpem.br |language=en-US}}</ref>
*Macromolecule Crystallography
*X-ray Spectroscopy e Diffraction in Extreme Conditions <ref>{{Cite web |title=Ema – LNLS |url=https://lnls.cnpem.br/facilities/ema-en/ |access-date=2023-05-08 |website=lnls.cnpem.br}}</ref>
*Small Angle X-Ray Scattering
*Infrared Micro and Nanospectroscopy <ref>{{Cite web |title=Imbuia – LNLS |url=https://lnls.cnpem.br/facilities/imbuia-en/ |access-date=2023-05-08 |website=lnls.cnpem.br}}</ref>
*X-Ray Absorption and Fluorescence Spectroscopy
*Resonant Inelastic X-ray scattering and Photoelectron spectroscopy <ref>{{Cite web |title=Ipê – LNLS |url=https://lnls.cnpem.br/facilities/ipe-en/ |access-date=2023-05-08 |website=lnls.cnpem.br}}</ref>
*UV and Soft X-Ray Spectroscopy
*Macromolecular Micro and Nanocrystallography <ref>{{Cite web |title=Manacá – LNLS |url=https://lnls.cnpem.br/facilities/manaca-en/ |access-date=2023-05-08 |website=lnls.cnpem.br |language=en-US}}</ref>
depending on the beamline used.
InThese currentbeamlines productionare ispart theof [[Sirius (synchrotron light source)|Sirius Project]], a plan for a 3 GeV [[synchrotron light source]]. The groundbreaking ceremony took place in May 2013. The plan includes an initial 13 beamlines, with a final goal of 40, ranging from 10 eV to 100 keV. It is being built next to the current CNPEM campus. It was inaugurated in 2018.<ref>{{Cite web|url=https:https://revistagalileu.globo.com/Ciencia/noticia/2018/11/acelerador-de-particulas-sirius-e-inaugurado-em-cerimonia-oficial.html|title=Acelerador de Partículas Sirius é inaugurado}}</ref>
 
In current production is the [[Sirius (synchrotron light source)|Sirius Project]], a plan for a 3 GeV [[synchrotron light source]]. The groundbreaking ceremony took place in May 2013. The plan includes an initial 13 beamlines, with a final goal of 40, ranging from 10 eV to 100 keV. It is being built next to the current CNPEM campus. It was inaugurated in 2018.<ref>{{Cite web|url=https:https://revistagalileu.globo.com/Ciencia/noticia/2018/11/acelerador-de-particulas-sirius-e-inaugurado-em-cerimonia-oficial.html|title=Acelerador de Partículas Sirius é inaugurado}}</ref>
[[File:Sirius Synchrotron Entrance.jpg|thumb|Sirius Synchrotron Entrance]]
 
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{{coord|22|48|14.33|S|47|03|14.28|W|source:ptwiki_region:BR|display=title}}
 
{{Synchrotron radiation facilities}}
 
{{authority control}}