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Title: Improved Spin-Dependent WIMP Limits from a Bubble Chamber

Journal Article · · Science

Bubble Chambers provided the dominant particle detection technology in accelerator experiments for several decades, eventually falling into disuse with the advent of other techniques. We report here on the first period of operation of an ultra-clean, room-temperature bubble chamber containing 1.5 kg of superheated CF$$_{3}$$I, a target maximally sensitive to spin-dependent and -independent Weakly Interacting Massive Particle (WIMP) couplings. An exposure in excess of 250 kg-days is obtained, with a live-time fraction reaching 80%. This illustrates the ability to employ bubble chambers in a new realm, the search for dark matter particles. Improved limits on the spin-dependent WIMP-proton scattering cross section are extracted from this first period. An extreme intrinsic insensitivity to the backgrounds commonly limiting these experiments (a rejection factor for photon-induced electrons of $$\sim10^{-10}$$) has been measured in operating conditions leading to the detection of low-energy nuclear recoils such as those expected from WIMPs.

Research Organization:
Fermi National Accelerator Lab. (FNAL), Batavia, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC), High Energy Physics (HEP)
Contributing Organization:
COUPP
DOE Contract Number:
AC02-07CH11359
OSTI ID:
1893406
Report Number(s):
FERMILAB-PUB-08-091; arXiv:0804.2886; oai:inspirehep.net:780455
Journal Information:
Science, Vol. 319
Country of Publication:
United States
Language:
English

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