25 Publikationen
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2024 | Preprint | PUB-ID: 2986137Schmidt, Christian, Clarke, David A., Dimopoulos, Petros, Renzo, Francesco Di, Goswami, Jishnu, Singh, Simran, Skokov, Vladimir V., and Zambello, Kevin. 2024. “Universal scaling and the asymptotic behaviour of Fourier coefficients of the baryon-number density in QCD”. arXiv:2401.07790.
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2024 | Preprint | PUB-ID: 2986081Goswami, Jishnu, Clarke, D. A., Dimopoulos, P., Renzo, F. Di, Schmidt-Sonntag, Christian, Singh, Simran, and Zambello, K. 2024. “Exploring the Critical Points in QCD with Multi-Point Padé and Machine Learning Techniques in (2+1)-flavor QCD”. arXiv:2401.05651.
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2023 | Preprint | PUB-ID: 2968137Zambello, Kevin, Clarke, David, Dimopoulos, Petros, Di Renzo, Francesco, Goswami, Jishnu, Nicotra, Guido, Schmidt, Christian, and Singh, Simran. 2023. “Determination of Lee-Yang edge singularities in QCD by rational approximations”. arXiv:2301.03952.
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2022 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2961415Dimopoulos, Petros, Dini, Lorenzo, Di Renzo, Frances, Goswami, Jishnu, Nicotra, Guido, Schmidt, Christian, Singh, S., Zambello, K., and Ziesché, Felix. 2022. “Contribution to understanding the phase structure of strong interaction matter: Lee-Yang edge singularities from lattice QCD”. Physical Review D 105 (3): 034513.
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2022 | Datenpublikation | PUB-ID: 2961179Dimopoulos, Petros, Dini, Lorenzo, Di Renzo, Frances, Goswami, Jishnu, Nicotra, Guido, Schmidt, Christian, Singh, Simran, Zambello, Kevin, and Ziesché, Felix. 2022. Dataset for: "Contribution to understanding the phase structure of strong interaction matter: Lee-Yang edge singularities from lattice QCD". Bielefeld University.
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2022 | Preprint | PUB-ID: 2966875Schmidt-Sonntag, Christian, Clarke, David A., Dimopoulos, Petros, Goswami, Jishnu, Nicotra, Guido, Renzo, Francesco Di, Singh, Simran, and Zambello, Kevin. 2022. “Detecting critical points from Lee-Yang edge singularities in lattice QCD”. arXiv:2209.04345.
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2022 | Preprint | PUB-ID: 2966859Goswami, Jishnu, Karsch, Frithjof, Mukherjee, Swagato, and Schmidt-Sonntag, Christian. 2022. “Searching for the QCD critical point along the pseudo-critical/freeze-out line using Padé-resummed Taylor expansions of cumulants of conserved charge fluctuations”. arXiv:2206.04504.
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2022 | Datenpublikation | PUB-ID: 2962427Bollweg, Dennis, Goswami, Jishnu, Kaczmarek, Olaf, Karsch, Frithjof, Mukherjee, Swagato, Petreczky, Peter, Schmidt, Christian, and Scior, Philipp. 2022. Taylor expansions and Padé approximants for cumulants of conserved charge fluctuations at non-vanishing chemical potentials. Bielefeld University.
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2022 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2962729Bollweg, Dennis, Goswami, Jishnu, Kaczmarek, Olaf, Karsch, Frithjof, Mukherjee, Swagato, Petreczky, Peter, Schmidt, Christian, and Scior, Philipp. 2022. “Taylor expansions and Padé approximants for cumulants of conserved charge fluctuations at nonvanishing chemical potentials”. Physical Review D 105 (7): 074511.
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2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2950060Schmidt-Sonntag, Christian, Goswami, Jishnu, Nicotra, Guido, Ziesché, Felix, Dimopoulos, P., Di Renzo, F., Singh, S., and Zambello, K. 2021. “Net-baryon number fluctuations”. Acta Physica Polonica B, Proceedings supplement 14 (2): 241-249.
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2021 | Preprint | PUB-ID: 2961967Nicotra, Guido, Dimopoulos, Petros, Dini, Lorenzo, Renzo, Francesco Di, Goswami, Jishnu, Schmidt-Sonntag, Christian, Singh, Simran, Zambello, Kevin, and Ziesché, Felix. 2021. “Lee-Yang edge singularities in 2+1 flavor QCD with imaginary chemical potential”. arXiv:2111.05630.
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2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2958890Bollweg, Dennis, Goswami, Jishnu, Kaczmarek, Olaf, Karsch, Frithjof, Mukherjee, Swagato, Petreczky, P., Schmidt, Christian, and Scior, P. 2021. “Second order cumulants of conserved charge fluctuations revisited: Vanishing chemical potentials”. Physical Review D 104 (7): 074512.
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2021 | Datenpublikation | PUB-ID: 2957724Bollweg, Dennis, Goswami, Jishnu, Kaczmarek, Olaf, Karsch, Frithjof, Mukherjee, Swagato, Petreczky, Peter, Schmidt, Christian, and Scior, Philipp. 2021. Dataset for "Second order cumulants of conserved charge fluctuations revisited: Vanishing chemical potentials". Bielefeld University.
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2021 | Preprint | PUB-ID: 2957757Bollweg, Dennis, Goswami, Jishnu, Kaczmarek, Olaf, Karsch, Frithjof, Mukherjee, Swagato, Petreczky, Peter, Schmidt, Christian, and Scior, Philipp. 2021. “Second order cumulants of conserved charge fluctuations revisited I. Vanishing chemical potentials”. arXiv:2107.10011.
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2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2949874Basu, Aritra, Goswami, Jishnu, Schwarz, Dominik, and Urakawa, Yuko. 2021. “Searching for axion-like particles under strong gravitational lenses”. Physical review letters 126 (19): 191102.
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2020 | Datenpublikation | PUB-ID: 2941824Bazavov, A, Bollweg, Dennis, Ding, H.-T, Enns, Philipp, Goswami, Jishnu, Hegde, P, Kaczmarek, Olaf, et al. 2020. Dataset for : Skewness, kurtosis and the 5th and 6th order cumulants of net baryon-number distributions from lattice QCD confront high-statistics STAR data. Bielefeld University.
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2020 | Preprint | PUB-ID: 2941822Bazavov, A., Bollweg, Dennis, Ding, H. -T., Enns, P., Goswami, Jishnu, Hegde, P., Kaczmarek, Olaf, et al. 2020. “Skewness, kurtosis and the 5th and 6th order cumulants of net baryon-number distributions from lattice QCD confront high-statistics STAR data”. arXiv:2001.08530.
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2019 | Konferenzbeitrag | Veröffentlicht | PUB-ID: 2936515Goswami, Jishnu, Karsch, Frithjof, Lahiri, Anirban, Neumann, Marius, and Schmidt, Christian. 2019. “Critical end points in (2+1)-flavor QCD with imaginary chemical potential”. In Proceedings of Corfu Summer Institute 2018 "School and Workshops on Elementary Particle Physics and Gravity" . Vol. 347. Proceedings of Science. Trieste, Italy: Sissa Medialab: 162.
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2018 | Konferenzbeitrag | E-Veröff. vor dem Druck | PUB-ID: 2934703Goswami, Jishnu, Karsch, Frithjof, Lahiri, Anirban, and Schmidt, Christian. 2018. “QCD phase diagram for finite imaginary chemical potential with HISQ fermions”. In 36th International Symposium on Lattice Field Theory (Lattice 2018). Proceedings of Science (PoS).