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Kaneko, M. Kurata-Nishimura, N. Chiga, N. Fukuda, N. Inabe, N. Nakatsuka, P. Lasko, P. Morfouace, P. Paw{\\l}owski, R. Shane, R. Wang, S. J. Yennello, S. Nishimura, S. Tangwancharoen, T. Aumann, T. Isobe, T. Kobayashi, T. Murakami, T. Nakamura, T. Sumikama, W.G. Lynch, Y.J. Kim, Y. Kondo, Y. Leifels, Y. Shimizu, Y. Togano, Y. Zhang, Z. G. Xiao","submitted_at":"2021-03-11T18:44:54Z","abstract_excerpt":"Many neutron star (NS) properties, such as the proton fraction within a NS, reflect the symmetry energy contributions to the Equation of State that dominate when neutron and proton densities differ strongly. To constrain these contributions at supra-saturation densities, we measure the spectra of charged pions produced by colliding rare isotope tin (Sn) beams with isotopically enriched Sn targets. Using ratios of the charged pion spectra measured at high transverse momenta, we deduce the slope of the symmetry energy to be $42 < L < 117$ MeV. 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