“Papers of School of Physics”

 

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  91. Y. Farzan,
Hide-and-seek with cosmic tau neutrinos,
EPS-HEP2021 (2022),   [abstract]

DOI: 10.22323/1.398.0261

   92. S. Ansarifard and Y. Farzan,
Excess of tau events at SND@LHC, FASER$\nu $ and FASER$\nu $2,
Eur. Phys. J. C 82(2022), 568  [abstract]
DOI: 10.1140/epjc/s10052-022-10512-9

   93. Y. Farzan,
The Forward Physics Facility at the High-Luminosity LHC,
(2022),   [abstract]

   94. Y. Farzan,
Tau neutrinos in the next decade: from GeV to EeV,
J. Phys. G 49(2022), 110501  [abstract]
DOI: 10.1088/1361-6471/ac89d2

   95. Y. Farzan,
High-energy and ultra-high-energy neutrinos: A Snowmass white paper,
JHEP 36(2022), 55-110  [abstract]
DOI: 10.1016/j.jheap.2022.08.001

   96. A. Ashoorioon, K. Rezazadeh and A. Rostami,
NANOGrav Signal from the End of Inflation and the LIGO Mass and Heavier Primordial Black Holes,
Phys. Lett. B 835(2022), 137542  [abstract]

   97. Z. Safari, K. Rezazadeh and B. Malekolkalami,
Structure Formation in Dark Matter Particle Production Cosmology,
Phys. Dark Univ. 37(2022), 101092  [abstract]

   98. Z. Teimoori, K. Rezazadeh and K. Karami,
Primordial black holes formation and secondary gravitational waves in nonminimal derivative coupling inflation,
Astrophys. J 915(2022), 118  [abstract]
DOI: 10.3847/1538-4357/ac01cf

   99. S. Izadi Vishkayi and R. Asgari,
Magnetic domain wall dynamics under external electric field in bilayer CrI3,
Phys. Rev. B 105(2022), 235424  [abstract]
DOI: https://doi.org/10.1103/PhysRevB.105.235424

   100. M. Najafizadeh,
Off-shell supersymmetric continuous spin gauge theory,
JHEP 2022(2022), 38  [abstract]
DOI: https://doi.org/10.1007/JHEP02(2022)038

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