项目作者: smsharma

项目描述 :
Princeton Ph.D. dissertation, defended August 2018.
高级语言: TeX
项目地址: git://github.com/smsharma/phd-thesis.git
创建时间: 2018-05-01T17:16:00Z
项目社区:https://github.com/smsharma/phd-thesis

开源协议:Other

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Extragalactic Searches for Dark Matter Annihilation

License: CC BY-NC-SA 4.0
arXiv

Ph.D. dissertation, Siddharth Mishra-Sharma. Defended on August 10, 2018.

Abstract

We are at the dawn of a data-driven era in astrophysics and cosmology. A large number of ongoing and forthcoming experiments combined with an increasingly open approach to data availability offer great potential in unlocking some of the deepest mysteries of the Universe. Among these is understanding the nature of dark matter (DM)—-one of the major unsolved problems in particle physics. Characterizing DM through its astrophysical signatures will require a robust understanding of its distribution in the sky and the use of novel statistical methods.

The first part of this thesis describes the implementation of a novel statistical technique which leverages the “clumpiness” of photons originating from point sources (PSs) to derive the properties of PS populations hidden in astrophysical datasets. This is applied to data from the Fermi satellite at high latitudes (|b| > 30°) to characterize the contribution of PSs of extragalactic origin. We find that the majority of extragalactic gamma-ray emission can be ascribed to unresolved PSs having properties consistent with known sources such as active galactic nuclei. This leaves considerably less room for significant dark matter contribution.

The second part of this thesis poses the question: “what is the best way to look for annihilating dark matter in extragalactic sources?” and attempts to answer it by constructing a pipeline to robustly map out the distribution of dark matter outside the Milky Way using galaxy group catalogs. This framework is then applied to Fermi data and existing group catalogs to search for annihilating dark matter in extragalactic galaxies and clusters.

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License

Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0)

Contents and Compilation

  • thesis.tex: Main LaTeX file. Uncommenting the lines after “Online mode” or “Print mode” at the top of the file enables compiling either the online or print copies, respectively.
  • arXiv: Folder containing the arXiv version of the thesis.

Contact

Siddharth Mishra-Sharma (siddharthmishra19@gmail.com)

FluxUL_1647728240962.pdf
boost_models_data_1647728241226.pdf
bounds_1647728241413.pdf
data_individual_lims_1647728241893.pdf
data_individual_maxts_1647728242037.pdf
elephant_1647728242290.pdf
elephant10_1647728242598.pdf
elephant10000_1647728242933.pdf
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injsig_maxTS100GeV_1647728243279.pdf
injsig_maxTS10GeV_1647728243290.pdf
injsig_maxTS10TeV_1647728243618.pdf
jfactors_1647728244062.pdf
object5_maxts_lim_1647728244342.pdf
other_annh_1647728244630.pdf
signal_recovery_100GeV_1647728244827.pdf
signal_recovery_10GeV_1647728245297.pdf
signal_recovery_10TeV_1647728245499.pdf
skymaps_1647728246068.pdf
systematics_boost_1647728246230.pdf
systematics_cuts_1647728246410.pdf
systematics_dataset_1647728246883.pdf
systematics_lu_1647728247053.pdf
systematics_lu_elephant_1647728247267.pdf
systematics_nh_1647728247470.pdf
systematics_nots_cuts_1647728247669.pdf
systematics_profile_conc_1647728247695.pdf
DarkSky-galaxies_1647728250140.pdf
DarkSky_heatmap_1647728250460.pdf
LofM_1647728250903.pdf
LofMinf_1647728251057.pdf
TFAllLimitstruth_1647728251531.pdf
TFLimitsJcut_1647728251867.pdf
boost_models_1647728252355.pdf
cat_jfactors_1647728252631.pdf
cat_masses_1647728252931.pdf
cat_redshifts_1647728253123.pdf
cvir_models_1647728253340.pdf
darksky_elephants_1647728254664.pdf
darksky_limits_1647728254991.pdf
darksky_reduced_err_1647728255009.pdf
global_e251_1647728255334.pdf
global_e796_1647728255708.pdf
jfactor_correctLL_1647728256124.pdf
jfactor_wrongLL_1647728256284.pdf
signal_recovery_100GeV_1647728256828.pdf
signal_recovery_100GeV_loc2_1647728257080.pdf
signal_recovery_10GeV_1647728257228.pdf
signal_recovery_10GeV_loc2_1647728257397.pdf
signal_recovery_10TeV_1647728257667.pdf
signal_recovery_10TeV_loc2_1647728257862.pdf
signal_recovery_10TeV_noJuncert_1647728258075.pdf
N128HEp8-0K-SourceCounts-final-700-E15-p8-3br_1647728259081.pdf
N128HEp8-2K-SourceCounts-final-700-E15-p8-3br_1647728260628.pdf
N128UHEp8-0K-SourceCounts-final-700-E15-p8-3br_1647728260967.pdf
N128UHEp8-0K-data-ESpec-fp-700-E15-p8-3br_1647728261118.pdf
N128UHEp8-2K-SourceCounts-final-700-E15-p8-3br_1647728261927.pdf
N128UHEp8nb1-0K-SourceCounts-final-700-E15-p8-3br_1647728262547.pdf
N_cumul_UCV_0_10_10_K_1647728262982.pdf
Q3_p8-dnds_1647728263312.pdf
Rp8RBlw1-1-SourceCounts-final-700-E15-p8-3br_1647728264015.pdf
Rp8RBlw1-1-data-ESpec-fp-700-E15-p8-3br_1647728264200.pdf
U3RRBlw1p8-1-SourceCounts-final-700-E15-p8-3br_1647728265031.pdf
U3RRBlw1p8-1-data-ESpec-fp-700-E15-p8-3br_1647728265301.pdf
UCV_p6-dnds_1647728265947.pdf
UCV_p7-dnds_1647728266973.pdf
UCV_p8_altpriors1-dnds_1647728267480.pdf
UCV_p8_altpriors2-dnds_1647728268006.pdf
UCV_p8_altpriors3-dnds_1647728268756.pdf
UCV_p8_gauss-dnds_1647728269668.pdf
UCV_p8_m10-dnds_1647728271253.pdf
UCV_p8_north-dnds_1647728272185.pdf
UCV_p8_south-dnds_1647728272686.pdf
bl1-Espec_1647728272998.pdf
bl1-dnds_1647728273434.pdf
bl1sf-Espec_1647728273605.pdf
bl1sf-lowE-dnds_1647728274089.pdf
bl2-Espec_1647728274446.pdf
bl2-dnds_1647728274807.pdf
bl2-ucv-dnds_1647728275121.pdf
bl2sf-Espec_1647728275273.pdf
combined_intensities_HE_v2_1647728275477.pdf
combined_intensities_v3_1647728275920.pdf
dnds_UCVA_0_10_10_K_1647728276077.pdf
sf-Espec_1647728276279.pdf
sf-dnds_1647728276913.pdf
spectra_new_simp_1647728277277.pdf
temp_map_high_E_1647728277545.pdf
temp_map_low_E_1647728278257.pdf
triangle_plot_12_16_1647728279054.pdf
triangle_plot_16_20_1647728280108.pdf
triangle_plot_20_25_1647728281093.pdf
triangle_plot_8_12_1647728281959.pdf
ucv_p8_nobubs-dnds_1647728282751.pdf
bub_1647728283104.pdf
cells_1647728283617.pdf
data_1647728283950.pdf
dif_1647728284229.pdf
iso_1647728284621.pdf
jfactors_1647728286135.pdf