Quantum Information Science for High Energy Physics: Difference between revisions

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{{Program
{{<span class="error">Expansion depth limit exceeded</span>|ProgramName=Quantum Information Science for High Energy Physics
|ProgramName=Quantum Information Science for High Energy Physics
|ProgramType=Program
|ProgramType=Program
|OrgSponsor=Office of High Energy Physics
|OrgSponsor=Office of High Energy Physics
|TopOrganization=Department of Agriculture
|TopOrganization=Department of Agriculture
|Purpose=To leverage quantum information science (QIS) to solve complex problems in high energy physics by developing quantum algorithms, sensors, and computing techniques. It aims to enhance our understanding of fundamental physics and improve the capabilities of existing and future experiments.{{cite web |url=https://science.osti.gov/hep/Research/Quantum-Information-Science |title=Quantum Information Science |accessdate=January 30, 2025}}
|Purpose=To leverage quantum information science (QIS) to solve complex problems in high energy physics by developing quantum algorithms, sensors, and computing techniques. It aims to enhance our understanding of fundamental physics and improve the capabilities of existing and future experiments.{{<span class="error">Expansion depth limit exceeded</span>|url=https://science.osti.gov/hep/Research/Quantum-Information-Science |title=Quantum Information Science |accessdate=January 30, 2025}}
|Website=https://science.osti.gov/hep/Research/Quantum-Information-Science
|Website=https://science.osti.gov/hep/Research/Quantum-Information-Science
|ProgramStart=2018
|ProgramStart=2018
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'''Quantum Information Science for High Energy Physics''' is a research initiative by the Office of High Energy Physics that applies principles of quantum mechanics to tackle challenges in particle physics and cosmology.  
'''Quantum Information Science for High Energy Physics''' is a research initiative by the Office of High Energy Physics that applies principles of quantum mechanics to tackle challenges in particle physics and cosmology.  


By developing quantum computing algorithms, quantum sensors, and other quantum technologies, this program seeks to push the boundaries of what's possible in high energy physics research, offering new ways to explore the universe's fundamental laws.<ref>{{cite web |url=https://science.osti.gov/hep/Research/Quantum-Information-Science |title=Quantum Information Science |accessdate=January 30, 2025}}</ref>
By developing quantum computing algorithms, quantum sensors, and other quantum technologies, this program seeks to push the boundaries of what's possible in high energy physics research, offering new ways to explore the universe's fundamental laws.<span class="error">Expansion depth limit exceeded</span>


{{Official URL (simple)|url=https://science.osti.gov/hep/Research/Quantum-Information-Science}}
{{<span class="error">Expansion depth limit exceeded</span>|url=https://science.osti.gov/hep/Research/Quantum-Information-Science}}


==Goals==
==Goals==
* Develop quantum algorithms for data analysis in high energy physics.<ref>{{cite web |url=https://science.osti.gov/hep/Research/Quantum-Information-Science |title=Quantum Information Science |accessdate=January 30, 2025}}</ref>
* Develop quantum algorithms for data analysis in high energy physics.<span class="error">Expansion depth limit exceeded</span>
* Create quantum sensors for enhanced detection in particle physics experiments.
* Create quantum sensors for enhanced detection in particle physics experiments.
* Explore quantum computing for simulations that are intractable for classical computers.
* Explore quantum computing for simulations that are intractable for classical computers.
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[[Category:Programs and initiatives]]
[[Category:Programs and initiatives]]
[[Category:Programs]]
 
[[Category:Department of Energy]]
[[Category:Department of Energy]]