On the Statistical Analysis of X-ray Polarization Measurements
arXiv:1306.3885 · doi:10.1088/0004-637X/773/2/103
Abstract
In many polarimetry applications, including observations in the X-ray band, the measurement of a polarization signal can be reduced to the detection and quantification of a deviation from uniformity of a distribution of measured angles. We explore the statistics of such polarization measurements using Monte Carlo simulations and chi-squared fitting methods. We compare our results to those derived using the traditional probability density used to characterize polarization measurements and quantify how they deviate as the intrinsic modulation amplitude grows. We derive relations for the number of counts required to reach a given detection level (parameterized by beta, the "number of sigma's" of the measurement) appropriate for measuring the modulation amplitude by itself (single interesting parameter case) or jointly with the position angle (two interesting parameters case). We show that for the former case when the intrinsic amplitude is equal to the well known minimum detectable polarization (MDP) it is, on average, detected at the 3-sigma level. For the latter case, when one requires a joint measurement at the same confidence level, then more counts are needed than that required to achieve the MDP level. This additional factor is amplitude-dependent, but is approximately 2.2 for intrinsic amplitudes less than about 20%. It decreases slowly with amplitude and is 1.8 when the amplitude is 50%. We find that the position angle uncertainty at 1-sigma confidence is well described by the relation 28.5 (deg) / beta.
37 pages, 13 figures, accepted for publication in the Astrophysical Journal
References in corpus (3)
Cited by in corpus (25)
- The enhanced X-ray Timing and Polarimetry mission - eXTP
- XIPE: the X-ray Imaging Polarimetry Explorer
- Polarized x-rays from a magnetar
- PolarLight: a CubeSat X-ray Polarimeter based on the Gas Pixel Detector
- Accretion geometry of the neutron star low mass X-ray binary Cyg X-2 from X-ray polarization measurements
- X-ray Spectro-polarimetry with Photoelectric Polarimeters
- Polarization and long-term variability of Sgr A* X-ray echo
- In-flight calibration system of Imaging X-ray Polarimetry Explorer
- The imaging properties of the Gas Pixel Detector as a focal plane polarimeter
- Predicting the X-ray polarization of type-2 Seyfert galaxies
- Polarization properties of the weakly magnetized neutron star X-ray binary GS 1826-238 in the high soft state
- On the operation of X-ray polarimeters with a large field of view
- Polarimetric Analysis of the Long Duration Gamma Ray Burst GRB 160530A With the Balloon Borne Compton Spectrometer and Imager
- Calibration of the IXPE focal plane X-ray polarimeters to polarized radiation
- Prospects of 3D mapping of the Galactic Centre clouds with X-ray polarimetry
- Performance of the PRAXyS X-ray Polarimeter
- Uncovering magnetic turbulence in young supernova remnants with polarized X-ray imaging
- Preflight performance studies of the PoGOLite hard X-ray polarimeter
- High Energy Polarization of Blazars : Detection Prospects
- Instrumentation and Future Missions in the Upcoming Era of X-Ray Polarimetry
- Analysis of the data from photoelectric gas polarimeters
- Polarization properties of X-ray tubes used for Imaging X-ray Polarimetry Explorer calibration
- Correlation methods for the analysis of X-ray polarimetric signals
- General History of X-Ray Polarimetry in Astrophysics
- A significant detection of X-ray Polarization in Sco X-1 with PolarLight and constraints on the corona geometry