Fetching the paper…
Reading the bibliography…
The Primordial Inflation Explorer (PIXIE) is an Explorer-class mission to measure the gravity-wave signature of primordial inflation through its distinctive imprint on the linear polarization of the cosmic microwave background.
Ya. B. Zeldovich and R. A. Sunyaev, The Interaction of Matter and Radiation in a Hot-Model Universe , Astrophysics and Space Science 4
1969
Earlier work this paper cites.
V.A. Rubakov, M. Sazhin, and A. Varyaskin, Graviton Creation In The Inflationary Universe And The Grand Unification Scale , Phys Lett B 115
1982
Earlier work this paper cites.
J. C. Mather, The Cosmic Background Explorer (COBE) , Optical Engineering 21
1982
Earlier work this paper cites.
J. C. Mather Bolometer noise: nonequilibrium theory , Applied Optics 21
1982
Earlier work this paper cites.
R. Fabbri and R. Pollock, R., The Effect of Primordially Produced Gravitons upon the Anisotropy of the Cosmological Microwave Background Radiation , Physical Letters B 125
1983
Earlier work this paper cites.
J. Silk and A. Stebbins, Decay of long-lived particles in the early universe , The Astrophysical Journal 269
1983
Earlier work this paper cites.
L. Abbott and M. Wise, Constraints on Generalized Inflationary Cosmologies , Nuclear Physics B 244
1984
Earlier work this paper cites.
A. G. Polnarev, Polarization And Anisotropy Of The Relic Radiation, Induced By Cosmological Gravitational-Waves , Astronomicheskii Zhurnal 62
1985
Earlier work this paper cites.
J. C. Mather, et al., A preliminary measurement of the cosmic microwave background spectrum by the Cosmic Background Explorer (COBE) satellite , The Astrophysical Journal Letters 354
1990
Earlier work this paper cites.
C. Burigana, L. Danese, and G.F. De Zotti, Formation and Evolution of Early Distortions of the Microwave Background Spectrum: A Numerical Study , Astronomy and Astrophysics 246
1991
Earlier work this paper cites.
R. Daly, Spectral Distortions of the Microwave Background Radiation Resulting from the Damping of Pressure Waves , The Astrophysical Journal 371
1991
Earlier work this paper cites.
R. Davis et al., Cosmic Microwave Background Probes Models of Inflation , Physical Review Letters 69
1992
Earlier work this paper cites.
C. L. Bennett, et al., Preliminary Separation of Galactic and Cosmic Microwave Emission for the COBE Differential Microwave Radiometer , The Astrophysical Journal Letters 396
1992
Earlier work this paper cites.
L. P. Grishchuk, Cosmological Perturbations of Quantum-Mechanical Origin and Anisotropy of the Microwave Background , Physical Review Letters 80
1993
Earlier work this paper cites.
J. C. Mather, D. J. Fixsen, and R. A. Shafer, Design for the COBE far-infrared absolute spectrophotometer (FIRAS) , Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series 2019
1993
Earlier work this paper cites.
W. Hu, D. Scott, and J. Silk, Power Spectrum Constraints From Spectral Distortions In The Cosmic Microwave Background , The Astrophysical Journal Letters 430
1994
Earlier work this paper cites.
M. S. Turner and M. White, Dependence of inflationary reconstruction upon cosmological parameters , Physical Review D 53
1996
Earlier work this paper cites.
M. Kamionkowski, A. Kosowsky, and A. Stebbins, Statistics of Cosmic Microwave Background Polarization , Physical Review D 55
1997
Earlier work this paper cites.
D. P. Finkbeiner, M. Davis, and D. J. Schlegel, Extrapolation of Galactic Dust Emission at 100 Microns to Cosmic Microwave Background Radiation Frequencies Using FIRAS , The Astrophysical Journal 524
1999
Cited alongside, same era.
1999
Cited alongside, same era.
P. McDonald, et al., Cosmic microwave background constraint on residual annihilations of relic particles , Physical Review D 63
2001
Cited alongside, same era.
L. Knox, et al., Probing Early Structure Formation with Far-Infrared Background Correlations , The Astrophysical Journal 550
2001
Cited alongside, same era.
C. L. Bennett, et al., First-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Foreground Emission , The Astrophysical Journal Supplement Series 148
M. Ricottie, J. P. Ostriker, and K. J. Mack, Effect Of Primordial Black Holes On The Cosmic Microwave Background And Cosmological Parameter Estimates , The Astrophysical Journal 680
2008
Later among the works it cites.
P. Mukherjee and A. Liddle, Planck And Re-Ionization History: A Model Selection View , Monthly Notices of the Royal Astronomical Society 389
2008
Later among the works it cites.
E. Komatsu et al., Five-Year Wilkinson Microwave Anisotropy Probe Observations: Cosmological Interpretation , Astrophysical Journal Supplement Series 180
2009
Later among the works it cites.
J. Dunkley, et al., Prospects for Polarized Foreground Removal , AIP Conference Proceedings 1141
2009
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
2003
Cited alongside, same era.
W. Hu, M. M. Hedman, and M. Zaldarriaga, Benchmark parameters for CMB polarization experiments , Physical Review D 67
2003
Cited alongside, same era.
J. L. Feng, A. Rajaraman, and F. Takayama, Superweakly interacting massive particle dark matter signals from the early Universe , Physical Review D 68
2003
Cited alongside, same era.
R. Cen, The Universe Was Reionized Twice , The Astrophysical Journal 591
2003
Cited alongside, same era.
R. Hildebrand and L. Kirby, Polarization of FIR/Sub-mm Dust Emission , ASP Conference Series 309
2004
Cited alongside, same era.
E. Carretti, et al., Antenna instrumental polarization and its effects on E- and B-modes for CMBP observations , Astronomy and Astrophysics 420
2004
Cited alongside, same era.
K.M. Górski, et al., HEALPix: A Framework for High-Resolution Discretization and Fast Analysis of Data Distributed on the Sphere , The Astrophysical Journal 622
2005
Cited alongside, same era.
J. Bock, et al., Task Force on Cosmic Microwave Background Research (2006) astro-ph/0604101
2006
Cited alongside, same era.
2009
Later among the works it cites.
M. L. Brown, et al., Impact of modulation on CMB B-mode polarization experiments , Monthly Notices of the Royal Astronomical Society 397
2009
Later among the works it cites.
N. J. Miller, M. Shimon, and B. G. Keating, CMB polarization systematics due to beam asymmetry: Impact on cosmological birefringence , Physical Review D 79
2009
Later among the works it cites.
2009
Later among the works it cites.
B. T. Draine and A. A. Fraisse, Polarized Far-Infrared and Submillimeter Emission from Interstellar Dust , The Astrophysical Journal 696
2009
Later among the works it cites.
J. P.Filippini, et al., SPIDER: a balloon-borne CMB polarimeter for large angular scales , Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series 7741
2010
Later among the works it cites.
B. Reichborn-Kjennerud, et al., EBEX: a balloon-borne CMB polarization experiment , Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series 7741
2010
Later among the works it cites.
D. T. Chuss, et al., The Primordial Inflation Polarization Explorer (PIPER) , Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series 7741
2010
Later among the works it cites.
Y. D. Takahashi, et al., Characterization of the BICEP Telescope for High-precision Cosmic Microwave Background Polarimetry , The Astrophysical Journal 711
2010
Later among the works it cites.
H. J. de Vega and N. G. Sanchez, Model-independent analysis of dark matter points to a particle mass at the keV scale , Monthly Notices of the Royal Astronomical Society 404
2010
Later among the works it cites.
2010
Later among the works it cites.
2011
Closest in time.
U. Seljak, and M. Zaldarriaga, Signature of Gravity Waves in the Polarization of the Microwave Background , Physical Review Letters 78
2054
Closest in time.