Impact of strong magnetic field, baryon chemical potential, and medium anisotropy on polarization and spin alignment of hadrons

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Publicado en:The European Physical Journal. C, Particles and Fields. vol. 85, no. 5 (May 2025), p. 580
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Springer Nature B.V.
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245 1 |a Impact of strong magnetic field, baryon chemical potential, and medium anisotropy on polarization and spin alignment of hadrons 
260 |b Springer Nature B.V.  |c May 2025 
513 |a Journal Article 
520 3 |a The recent observation of global spin polarization of Λ<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq1.gif" /> (Λ¯<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq2.gif" />) hyperons and the spin alignment of ϕ<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq3.gif" /> and K∗0<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq4.gif" /> vector mesons create remarkable interest in investigating the particle polarization in the relativistic fluid produced in heavy-ion collisions at GeV/TeV energies. Among other sources of spin polarization phenomena, the Debye mass of a medium plays a crucial role in particle polarization. Any modification brought to the effective mass due to the temperature, strong magnetic field (eB), baryonic chemical potential (μB<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq5.gif" />), medium anisotropy (ξ<inline-graphic specific-use="web" mime-subtype="GIF" xlink:href="10052_2025_14260_Article_IEq6.gif" />), and vorticity, etc., certainly affects the particle spin polarization. In this work, we explore the global hyperon spin polarization and the spin alignment of vector mesons corresponding to the strong magnetic field, baryonic chemical potential, and medium anisotropy. We find that the degree of spin polarization is flavor-dependent for hyperons. Meanwhile, vector meson spin alignment depends on the hadronization mechanisms of initially polarized quarks and anti-quarks. Medium anisotropy significantly changes the degree of spin polarization compared to the magnetic field and baryon chemical potential. 
653 |a Quarks 
653 |a Magnetic fields 
653 |a Particle spin 
653 |a Heavy ions 
653 |a Relativistic particles 
653 |a Vector mesons 
653 |a Alignment 
653 |a Electrons 
653 |a Vorticity 
653 |a Polarization (spin alignment) 
653 |a Chemical potential 
653 |a Hyperons 
653 |a Anisotropy 
653 |a Baryons 
653 |a Flavor (particle physics) 
653 |a Hadrons 
653 |a Ionic collisions 
773 0 |t The European Physical Journal. C, Particles and Fields.  |g vol. 85, no. 5 (May 2025), p. 580 
786 0 |d ProQuest  |t Advanced Technologies & Aerospace Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3212428129/abstract/embedded/75I98GEZK8WCJMPQ?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3212428129/fulltextPDF/embedded/75I98GEZK8WCJMPQ?source=fedsrch