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The Cryogenic Dark Matter Search: First 5-Tower Data and Improved Understanding of Ionization Collection

Bailey, Catherine N.

Abstract Details

2010, Doctor of Philosophy, Case Western Reserve University, Physics.

The Cryogenic Dark Matter Search (CDMS) is searching for Weakly Interacting Massive Particles (WIMPs) with cryogenic particle detectors. These detectors have the ability to discriminate between nuclear recoil candidate and electron recoil background events by collecting both phonon and ionization energy from recoils in the detector crystals. The CDMS-II experiment has completed analysis of the first data runs with 30 semiconductor detectors at the Soudan Underground Laboratory, resulting in a world leading WIMP-nucleon spin-independent cross section limit for WIMP masses above 44 GeV/c2.

As CDMS aims to achieve greater WIMP sensitivity, it is necessary to increase the detector mass and discrimination between signal and background events. Incomplete ionization collection results in the largest background in the CDMS detectors as this causes electron recoil background interactions to appear as false candidate events. Two primary causes of incomplete ionization collection are surface and bulk trapping.

Recent work has been focused on reducing surface trapping through the modification of fabrication methods for future detectors. Analyzing data taken with test devices has shown that hydrogen passivation of the amorphous silicon blocking layer worsens surface trapping. Additional data has shown that the iron-ion implantation used to lower the critical temperature of the tungsten transition-edge sensors causes a degradation of the ionization collection. Using selective implantation on future detectors may improve ionization collection for events near the phonon side detector surface.

Bulk trapping is minimized by neutralizing ionized lattice impurities. Detector investigations at testing facilities and in situ at the experimental site have provided methods to optimize the neutralization process and monitor running conditions to maintain full ionization collection.

This work details my contribution to the 5-tower data taking, monitoring, and analysis effort as well as the SuperCDMS detector development with the focus on monitoring and improving ionization collection in the detectors.

Daniel Akerib (Advisor)
Brett Ellman (Committee Member)
Tom Shutt (Committee Member)
Harsh Mathur (Committee Member)
286 p.

Recommended Citations

Citations

  • Bailey, C. N. (2010). The Cryogenic Dark Matter Search: First 5-Tower Data and Improved Understanding of Ionization Collection [Doctoral dissertation, Case Western Reserve University]. OhioLINK Electronic Theses and Dissertations Center. http://rave.ohiolink.edu/etdc/view?acc_num=case1252692321

    APA Style (7th edition)

  • Bailey, Catherine. The Cryogenic Dark Matter Search: First 5-Tower Data and Improved Understanding of Ionization Collection. 2010. Case Western Reserve University, Doctoral dissertation. OhioLINK Electronic Theses and Dissertations Center, http://rave.ohiolink.edu/etdc/view?acc_num=case1252692321.

    MLA Style (8th edition)

  • Bailey, Catherine. "The Cryogenic Dark Matter Search: First 5-Tower Data and Improved Understanding of Ionization Collection." Doctoral dissertation, Case Western Reserve University, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=case1252692321

    Chicago Manual of Style (17th edition)