HR: 1340h
AN: SH13A-1097 [Abstracts]
TI: Two New Approaches to Determining Parameter Values to Emission Spectra From RHESSI
AU: * schwartz, r
EM: richard.a.schwartz@nasa.gov
AF: NASA/GSFC and Catholic Univ. of America, Code 671, Greenbelt, MD 20771, United States
AU: Ireland, J
EM: ireland@grace.nascom.nasa.gov
AF: NASA/GSFC and ADNET Systems, Code 671.1, Bldg 26, Greenbelt, MD 20770, United
States
AB:
We examine two new approaches to determining parameter values to emission spectra from RHESSI. Simulated
annealing removes much of the bias inherent in initializing commonly used deterministic routines through
implementing a parameter space search minimizing a suitable cost function (such as sum of squares of
differences between data and a parameterized curve). This search gradually moves from being a full random
search to a directed search where only parameter values which minimize the cost function are accepted.
In comparison, Markov Chain Monte Carlo methods are used to sample from the Bayesian posterior distribution
constructed from prior information on the observation (such as the number of emission lines present and likely
parameter values) as well as the data itself. Parameter values can then be assigned by constructing the
appropriate averages from the data.
These methods have the advantage of sidestepping many of the problems of traditional analysis routines (for
example, ill-conditioned matrices) whilst allowing the easy inclusion of other information, such as parameter
constraints. Both approaches are applied to RHESSI spectroscopic data, and are compared to more commonly
used routines.
RHESSI is comprised of separate detectors which allows us to conduct 9 independent measurements of the
same solar flux over any time interval. Since these new methods return important information about the
dispersion in a parameter from counting statistics, then the multi-detector sample will also contain important
insight into the sources of systematic deviations.
DE: 7519 Flares
DE: 7554 X-rays, gamma rays, and neutrinos
DE: 7594 Instruments and techniques
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2007 Fall Meeting