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where I'd like to be ...

Prof Subir Sarkar

Professor Emeritus

Research theme

  • Particle astrophysics & cosmology
  • Fundamental particles and interactions

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Particle theory
Subir.Sarkar@physics.ox.ac.uk
Telephone: 01865 (2)73962
Rudolf Peierls Centre for Theoretical Physics, room 60.12
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Brief CV
  • About
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  • IceCube@Oxford
  • Publications

IceCube

Physics World 2013 Breakthrough of the Year
IceCube at Oxford

I am a member since 2004 of the IceCube collaboration which discovered cosmic high energy neutrinos and identified some of their astrophysical sources.

IceCube @ Oxford

The high energy cosmic ray spectrum from relic particle decay

(2001)

Authors:

Subir Sarkar, Ramon Toldra
More details from the publisher

Low-scale inflation

Nuclear Physics B 608:1-2 (2001) 423-450

Authors:

G Germán, G Ross, S Sarkar

Abstract:

We show that the scale of the inflationary potential may be the electroweak scale or even lower, while still generating an acceptable spectrum of primordial density perturbations. Thermal effects readily lead to the initial conditions necessary for low scale inflation to occur, and even the moduli problem can be evaded if there is such an inflationary period. We discuss how low scale inflationary models may arise in supersymmetric theories or in theories with large new space dimensions. © 2001 Elsevier Science B.V.
Details from ArXiV
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On the APM power spectrum and the CMB anisotropy: Evidence for a phase transition during inflation?

Monthly Notices of the Royal Astronomical Society 324:4 (2001) 977-987

Authors:

J Barriga, E Gaztañaga, MG Santos, S Sarkar

Abstract:

Adams et al. have noted that according to our current understanding of the unification of fundamental interactions, there should have been phase transitions associated with spontaneous symmetry breaking during the inflationary era. This may have resulted in the breaking of scale-invariance of the primordial density perturbation for brief periods. A possible such feature was identified in the power spectrum of galaxy clustering in the automated plate measurement (APM) survey at the scale k ∼ 0.1 h Mpc-1 and it was shown that the secondary acoustic peaks in the power spectrum of the cosmic microwave background (CMB) anisotropy should consequently be suppressed. We demonstrate that this prediction is confirmed by the recent Boomerang and Maxima observations, which favour a step-like spectral feature in the range k ∼ (0.06-0.6) h Mpc-1 independently of the similar previous indication from the APM data. Such a spectral break enables an excellent fit to both APM and CMB data with a baryon density consistent with the big bang nucleosynthesis (BBN) value. It also allows the possibility of a matter-dominated universe with zero cosmological constant, which we show can now account for even the evolution of the abundance of rich clusters.
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Details from ArXiV

No cosmological domain wall problem for weakly coupled fields

(2001)

Authors:

Horacio Casini, Subir Sarkar
More details from the publisher

Evidence for an inflationary phase transition from the LSS and CMB anisotropy data

NUCL PHYS B-PROC SUP 95 (2001) 66-69

Authors:

J Barriga, E Gaztanaga, MG Santos, S Sarkar

Abstract:

In the light of the recent Boomerang and Maxima observations of the CMB which show an anomalously low second acoustic peak, we reexamine the prediction by Adams et al (1997) that this would be the consequence of a 'step' in the primordial spectrum induced by a spontaneous symmetry breaking phase transition during primordial inflation. We demonstrate that a deviation from scale-invariance around k similar to 0.1 h Mpc(-1) can simultaneously explain both the feature identified earlier in the APM galaxy power spectrum as well the recent CMB anisotropy data, with a baryon density consistent with the BBN value. Such a break also allows a good fit to the data on cluster abundances even for a critical density matter-dominated universe with sere cosmological constant.
More details from the publisher
Details from ArXiV

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