Saved in:
| Main Authors: | Barman, Basabendu, Banik, Amit Dutta, Paul, Avik |
|---|---|
| Format: | Preprint |
| Published: |
2020
|
| Subjects: | |
| Online Access: | https://arxiv.org/abs/2012.11969 |
| Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Similar Items
Dark matter-electron scattering and freeze-in scenarios in the light of $Z^\prime$ mediation
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Implications of DESI for Dark Matter & Cosmic Birefringence
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Testing Axionic Dark Matter during Gravitational Reheating
by: Barman, Basabendu, et al.
Published: (2023)
by: Barman, Basabendu, et al.
Published: (2023)
Lepton collider as a window to reheating via freezing in dark matter detection. Part I
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Testing leptogenesis and dark matter production during reheating with primordial gravitational waves
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Rescuing Gravitational-Reheating in Chaotic Inflation
by: Barman, Basabendu, et al.
Published: (2023)
by: Barman, Basabendu, et al.
Published: (2023)
Resonant Reheating
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Gravitational wave signatures of cogenesis from a burdened PBH
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Indirect dark matter searches with neutrino telescopes via energetic cosmic showers
by: Basu, Arindam, et al.
Published: (2025)
by: Basu, Arindam, et al.
Published: (2025)
What KM3-230213A events may tell us about the neutrino mass and dark matter
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Asymmetries from a charged memory-burdened PBH
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Is leptogenesis during gravitational reheating flavourful?
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Imprints of Reheating Dynamics on Gravitational Waves from Phase Transitions
by: Barman, Basabendu, et al.
Published: (2026)
by: Barman, Basabendu, et al.
Published: (2026)
Light PIDM in Warped Extra Dimensions
by: Arun, Mathew T, et al.
Published: (2025)
by: Arun, Mathew T, et al.
Published: (2025)
Hunting for heavy $Z^\prime$ with IceCube neutrinos and gravitational waves
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Constraining burdened PBHs with gravitational waves
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Two or three things particle physicists (mis)understand about (pre)heating
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Constraining Gravitational Dark Matter with LHAASO and Fermi-LAT
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Confronting the dark matter capture rate with a continuous gravitational wave probe of local neutron stars
by: Bhattacharjee, Pooja, et al.
Published: (2024)
by: Bhattacharjee, Pooja, et al.
Published: (2024)
Leptogenesis, primordial gravitational waves, and PBH-induced reheating
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Probing Reheating with Gravitational Waves from Graviton Bremsstrahlung
by: Barman, Basabendu, et al.
Published: (2024)
by: Barman, Basabendu, et al.
Published: (2024)
Exploring the Co-SIMP dark matter model using the 21-cm signal from the dark ages
by: Paul, Debarun, et al.
Published: (2025)
by: Paul, Debarun, et al.
Published: (2025)
Baryon-dark matter coincidence in Randall-Sundrum Model
by: Barman, Basabendu, et al.
Published: (2026)
by: Barman, Basabendu, et al.
Published: (2026)
Freeze-in production of scalaron dark matter in $f(R)$ gravity
by: Barman, Basabendu, et al.
Published: (2025)
by: Barman, Basabendu, et al.
Published: (2025)
Constraining UV freeze-in of light relics with current and next-generation CMB observations
by: Caloni, Luca, et al.
Published: (2024)
by: Caloni, Luca, et al.
Published: (2024)
Bounds on Ultralight Dark Matter from NANOGrav
by: Aghaie, Mohammad, et al.
Published: (2023)
by: Aghaie, Mohammad, et al.
Published: (2023)
Temperature evolution in the Early Universe and freeze-in at stronger coupling
by: Cosme, Catarina, et al.
Published: (2024)
by: Cosme, Catarina, et al.
Published: (2024)
Slow-down of expanding bubbles in the early Universe
by: Bhusal, Nabeen, et al.
Published: (2026)
by: Bhusal, Nabeen, et al.
Published: (2026)
Challenges in Interpreting the NANOGrav 15-Year Data Set as Early Universe Gravitational Waves Produced by ALP Induced Instability
by: Geller, Michael, et al.
Published: (2023)
by: Geller, Michael, et al.
Published: (2023)
From WIMP to FIMP during reheating: collider vs non-collider probes for p-wave annihilation
by: Pradhan, Dipankar, et al.
Published: (2026)
by: Pradhan, Dipankar, et al.
Published: (2026)
Long lived inert Higgs in fast expanding universe and its imprint on cosmic microwave background
by: Ghosh, Dilip Kumar, et al.
Published: (2022)
by: Ghosh, Dilip Kumar, et al.
Published: (2022)
Disentangling the Origins of the NANOGrav Signal: Early Universe Models and $ΔN_{eff}$ Bounds
by: Ben-Dayan, Ido, et al.
Published: (2025)
by: Ben-Dayan, Ido, et al.
Published: (2025)
Supercooled phase transitions in conformal dark sectors explain NANOGrav data
by: Gonçalves, João, et al.
Published: (2025)
by: Gonçalves, João, et al.
Published: (2025)
The NANOGrav 15 yr Data Set: Running of the Spectral Index
by: Agazie, Gabriella, et al.
Published: (2024)
by: Agazie, Gabriella, et al.
Published: (2024)
Ultra-light dark matter explanation of NANOGrav observations
by: Chowdhury, Debtosh, et al.
Published: (2023)
by: Chowdhury, Debtosh, et al.
Published: (2023)
Primordial Gravitational Waves from Phase Transitions during Reheating
by: Banik, Amitayus, et al.
Published: (2025)
by: Banik, Amitayus, et al.
Published: (2025)
The split majoron model confronts the NANOGrav signal and cosmological tensions
by: Di Bari, Pasquale, et al.
Published: (2023)
by: Di Bari, Pasquale, et al.
Published: (2023)
Gravitational Waves from SMBH Binaries in Light of the NANOGrav 15-Year Data
by: Ellis, John, et al.
Published: (2023)
by: Ellis, John, et al.
Published: (2023)
Dark Matter from freeze-in and its inhomogeneities
by: Strumia, Alessandro
Published: (2022)
by: Strumia, Alessandro
Published: (2022)
Exploring non-equilibrium effects in sequential freeze-in
by: Chatterjee, Shiuli, et al.
Published: (2026)
by: Chatterjee, Shiuli, et al.
Published: (2026)
Similar Items
-
Dark matter-electron scattering and freeze-in scenarios in the light of $Z^\prime$ mediation
by: Barman, Basabendu, et al.
Published: (2024) -
Implications of DESI for Dark Matter & Cosmic Birefringence
by: Barman, Basabendu, et al.
Published: (2025) -
Testing Axionic Dark Matter during Gravitational Reheating
by: Barman, Basabendu, et al.
Published: (2023) -
Lepton collider as a window to reheating via freezing in dark matter detection. Part I
by: Barman, Basabendu, et al.
Published: (2024) -
Testing leptogenesis and dark matter production during reheating with primordial gravitational waves
by: Barman, Basabendu, et al.
Published: (2024)