Zobrazeno 1 - 10
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pro vyhledávání: '"Poudel, Sagar"'
Radioactive decays from ^{42}Ar and its progeny ^{42}K are potential background sources in large-scale liquid-argon-based neutrino and dark matter experiments. In the atmosphere, ^{42}Ar is produced primarily by cosmogenic activation on ^{40}Ar. The
Externí odkaz:
http://arxiv.org/abs/2309.16169
Autor:
Poudel, Sagar
The issues surrounding the distribution and management of ecosystem resources in local communities in the face of climate change have never been more relevant. This qualitative study seeks to explore the understanding and implications surrounding env
Externí odkaz:
http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-39431
Autor:
Baxter, Daniel, Bunker, Raymond, Shaw, Sally, Westerdale, Shawn, Arnquist, Isaac, Akerib, Daniel S., Calkins, Rob, Cebrián, Susana, Dent, James B., di Vacri, Maria Laura, Dobson, Jim, Egana-Ugrinovic, Daniel, Erlandson, Andrew, Ghag, Chamkaur, Hall, Carter, Hall, Jeter, Haselschwardt, Scott, Hoppe, Eric, Jackson, Chris M., Kahn, Yonatan, Kamaha, Alvine, Kelsey, Mike, Kish, Alexander, Kurinsky, Noah, Laubenstein, Matthias, Miller, Eric H., Morrison, Eric, Mount, Brianna, Newstead, Jayden L., Nisi, Stefano, Olcina, Ibles, Orrell, John, Pereverzev, Sergey, Perry, Emily, Piepke, Andreas, Poudel, Sagar Sharma, Ramanathan, Karthik, Reichenbacher, Juergen, Saab, Tarek, Saldanha, Richard, Savarese, Claudio, Schnee, Richard, Scorza, Silvia, Singh, Rajeev, Stifter, Kelly, Suerfu, Burkhant, Szydagis, Matthew, Temples, Dylan J., Villano, Anthony, Woodward, David, Xu, Jingke
Future dark matter direct detection experiments will reach unprecedented levels of sensitivity. Achieving this sensitivity will require more precise models of signal and background rates in future detectors. Improving the precision of signal and back
Externí odkaz:
http://arxiv.org/abs/2203.07623
Autor:
SuperCDMS Collaboration, Al-Bakry, Musaab, Alkhatib, Imran, Amaral, Dorian Praia do, Aralis, Taylor, Aramaki, Tsuguo, Arnquist, Isaac, Langroudy, Iman Ataee, Azadbakht, Elham, Banik, Samir, Bathurst, Corey, Bauer, Dan, Bezerra, Lucas, Bhattacharyya, Rik, Brink, Paul, Bunker, Ray, Cabrera, Blas, Calkins, Robert, Cameron, Robert, Cartaro, Concetta, Cerdeno, David, Chang, Yen-Yung, Chaudhuri, Mouli, Chen, Ran, Chott, Nicholas, Cooley, Jodi, Coombes, Harrison, Corbett, Jonathan, Cushman, Priscilla, De Brienne, François, Dharani, Sukeerthi, di Vacri, Maria Laura, Diamond, Miriam, Fascione, Eleanor, Figueroa, Enectali, Fink, Caleb, Fouts, Ken, Fritts, Matt, Gerbier, Gilles, Germond, Richard, Ghaith, Muad, Golwala, Sunil, Hall, Jeter, Hassan, Noah, Hines, Bruce, Hollister, Matt, Hong, Ziqing, Hoppe, Eric, Hsu, Lauren, Huber, Martin, Iyer, Vijay, Jardin, Daniel, Jastram, Andrew, Kashyap, Varchaswi, Kelsey, Michael, Kubik, Andrew, Kurinsky, Noah, Lawrence, Richard, Lee, Matthew, Li, Ashley, Liu, Jasmine, Liu, Yan, Loer, Ben, Lukens, Pat, MacFarlane, David, Mahapatra, Rupak, Mandic, Vuk, Mast, Nicholas, Mayer, Adam, Theenhausen, Hanno Meyer zu, Michaud, Émile, Michielin, Emanuele, Mirabolfathi, Nader, Mohanty, Bedangadas, Nagorny, Serge, Nelson, Jack, Neog, Himangshu, Novati, Valentina, Orrell, John, Osborne, McKay, Oser, Scott, Page, William, Partridge, Richard, Pedreros, David S., Podviianiuk, Ruslan, Ponce, Francisco, Poudel, Sudip, Pradeep, Aditi, Pyle, Matt, Rau, Wolfgang, Reid, Elliott, Ren, Tom, Reynolds, Tyler, Roberts, Amy, Robinson, Alan, Saab, Tarek, Sadoulet, Bernard, Saikia, Ishwita, Sander, Joel, Sattari, Ata, Schmidt, Benjamin, Schnee, Richard, Scorza, Silvia, Serfass, Bruno, Poudel, Sagar Sharma, Sincavage, Derek, Stanford, Chris, Street, Joseph, Sun, Huanbo, Thasrawala, Fatema, Toback, David, Underwood, Ryan, Verma, Shubham, Villano, Anthony, von Krosigk, Belina, Watkins, Samuel, Wen, Osmond, Williams, Zachary, Wilson, Matthew, Winchell, Joshua, Wu, Chih-pan, Wykoff, Kevin, Yellin, Steve, Young, Betty, Yu, To Chin, Zatschler, Birgit, Zatschler, Stefan, Zaytsev, Alexander, Zhang, Enze, Zheng, Lei, Zuber, Summer
In this paper, we present a re-analysis of SuperCDMS data using a profile likelihood approach to search for sub-GeV dark matter particles (DM) through two inelastic scattering channels: bremsstrahlung radiation and the Migdal effect. By considering p
Externí odkaz:
http://arxiv.org/abs/2203.02594
Autor:
Sapkota, Sanjeeb, Adhikari, Prabhat, Sah, Sunil, Bhattarai, Sarita, Shrestha, Shiva Prasad, Poudel, Sagar, Sharma, Hem Raj, Maleku, Kabin, Simkhada, Padam
Publikováno v:
In Journal of Oral Biology and Craniofacial Research March-April 2022 12(2):299-301
Autor:
Poudel, Sagar
Guanine nucleotide binding protein (G-protein) coupled receptors (GPCRs), the largest receptor family, is enormously important for the pharmaceutical industry as they are the target of 50-60% of all existing medicines. Discovery of many new GPCR rece
Externí odkaz:
http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-29
Autor:
Poudel, Sagar Sharma
Publikováno v:
AIP Conference Proceedings; 2023, Vol. 2908 Issue 1, p1-6, 6p
Publikováno v:
AIP Conference Proceedings; 2023, Vol. 2908 Issue 1, p1-5, 5p
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