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Design and Construction of Prototype Dark Matter Detectors

Design and Construction of Prototype Dark Matter Detectors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The Lepton Quark Studies (LQS) group is engaged in searching for dark matter using the Dark Matter Time Projection Chamber (DMTPC) at the Waste Isolation Pilot Plant (WIPP) (Carlsbad, NM). DMTPC is a direction-sensitive dark matter detector designed to measure the recoil direction and energy deposited by fluorine nuclei recoiling from the interaction with incident WIMPs. In the past year, the major areas of progress have been: to publish the first dark matter search results from a surface run of the DMTPC prototype detector, to build and install the 10L prototype in the underground laboratory at WIPP which will house the 1 m3 detector, and to demonstrate charge and PMT readout of the TPC using prototype detectors, which allow triggering and [Delta]z measurement to be used in the 1 m3 detector under development.

Design and Construction of Prototype Dark Matter Detectors

Design and Construction of Prototype Dark Matter Detectors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The Lepton Quark Studies (LQS) group is engaged in searching for dark matter using the Dark Matter Time Projection Chamber (DMTPC) at the Waste Isolation Pilot Plant (WIPP) (Carlsbad, NM). DMTPC is a direction-sensitive dark matter detector designed to measure the recoil direction and energy deposited by fluorine nuclei recoiling from the interaction with incident WIMPs. In the past year, the major areas of progress have been: to publish the first dark matter search results from a surface run of the DMTPC prototype detector, to build and install the 10L prototype in the underground laboratory at WIPP which will house the 1 m3 detector, and to demonstrate charge and PMT readout of the TPC using prototype detectors, which allow triggering and [Delta]z measurement to be used in the 1 m3 detector under development.

An Analysis of a Dataset from a Prototype Dark Matter Detector and the Design, Simulation and Construction of a New Detector

An Analysis of a Dataset from a Prototype Dark Matter Detector and the Design, Simulation and Construction of a New Detector PDF Author: Richard Eggleston
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Development of a Prototype for a Low Dead Time Dark Matter Detector Using Superheated Liquid

Development of a Prototype for a Low Dead Time Dark Matter Detector Using Superheated Liquid PDF Author: Pitam Mitra
Publisher:
ISBN:
Category : Dark matter (Astronomy)
Languages : en
Pages : 100

Book Description
PICASSO (Project in Canada to Search for Supersymmetric Objects) is a direct dark matter search experiment located at SNOLAB. PICASSO uses su- perheated Freon-10 (C4 F10) as target for elastic scattering of Weakly Interact- ing Massive Particles (WIMPs) which are the most favored particle candidates for dark matter. In this thesis, a "geyser", a small-scale working prototype of a low dead-time dark matter detector, is described. This detector has a novel design for the recovery of the active fluid. It is demonstrated that the detector can stably sustain superheated fluid for more than 48 hours. Systematic studies have been performed of the stability, the dead time, energy thresholds and the operational parameters of the geyser. The geyser was operated stably for more than 73 hours, out of which 40 hours of thermodynamic, optical and acoustic data were analysed. An image analysis algorithm was developed to localize events. Acoustic data was analyzed using techniques from the PICASSO experiment. A strong discrimination effect between alpha-like events and nuclear recoil-like events was found.

First Results from a Twenty-liter Prototype Dark Matter Detector with Directional Sensitivity

First Results from a Twenty-liter Prototype Dark Matter Detector with Directional Sensitivity PDF Author: Jeremy Paul Lopez
Publisher:
ISBN:
Category :
Languages : en
Pages : 199

Book Description
Astronomical and cosmological evidence suggests that 27% of the energy content of the universe is in the form of non-baryonic matter referred to as "dark matter." Weakly interacting massive particles have long been considered attractive candidates for this dark matter and can be found in a wide variety of models of physics beyond the Standard Model. The Dark Matter Time Projection Chamber experiment uses low-pressure gas time projection chambers to search for nuclear recoils caused by interactions between nuclei inside a detector and weakly interacting massive particles in the dark matter halo of the Milky Way galaxy. These detectors are also able to reconstruct the directions of these nuclear recoils, allowing for better rejection of possible background events. This thesis describes the design of a small prototype detector and the strategies used by the DMTPC collaboration to reconstruct events, reject backgrounds, and identify nuclear recoil candidate events. It presents the results of several studies aimed at understanding background events in DMTPC detectors. Finally, this work will present the first results from a nuclear recoil search taken with this detector in a surface laboratory at MIT.

Identification Of Dark Matter, The - Proceedings Of The First International Workshop

Identification Of Dark Matter, The - Proceedings Of The First International Workshop PDF Author: Neil J C Spooner
Publisher: World Scientific
ISBN: 9814546372
Category :
Languages : en
Pages : 638

Book Description
There can be little doubt now that 90-99% of the Universe comprises dark matter. Hence it is of critical importance now not just to pursue further evidence for its existence but rather to identify what the dark matter is. Assessment of progress in this area was the objective of the first International Workshop on the Identification of Dark Matter, in particular to consider what techniques, both observational and experimental, are currently being used, how successful they are now and what new techniques will improve the prospects of identifying the likely candidates. The meeting included reviews on major particle astrophysics topics in dark matter but was largely devoted to short contributed talks on new work in the field. This book is the written proceedings of the meeting.

Identification Of Dark Matter, The - Proceedings Of The Sixth International Workshop

Identification Of Dark Matter, The - Proceedings Of The Sixth International Workshop PDF Author: Minos Axenides
Publisher: World Scientific
ISBN: 9814474789
Category : Science
Languages : en
Pages : 704

Book Description
This volume is the latest in a prominent biannual series of scientific meetings on the exciting research topics of dark matter and, more recently, of dark energy. It contains a state-of-the-art update on detection efforts by experimental groups around the world trying to pin down exotic new forms of matter under the names of axions, neutralinos, wimps, primordial black holes, q balls, sterile neutrinos, as well as a tantalizing new form of dark energy component called phantom energy and quintessence. The book is self-contained as it also includes general reviews on recent cosmological observations — supernovae measurements, cosmic matter distribution surveys and cosmic radiation anisotropies — introducing even the uninitiated reader to this fascinating frontier of research.

Dark Matter In Astro- And Particle Physics, Dark '96

Dark Matter In Astro- And Particle Physics, Dark '96 PDF Author: Hans Volker Klapdor-kleingrothaus
Publisher: World Scientific
ISBN: 9814546364
Category :
Languages : en
Pages : 758

Book Description
This volume contains the talks presented at the International Workshop on Aspects of Dark Matter in Astro- and Particle Physics (DARK '96). It provides a thorough presentation and discussion of the topic of dark matter, which currently seems to be one of the most exciting problems of modern physics, in the perspectives of different disciplines like astronomy, astrophysics, cosmology and particle physics.The lectures and talks range from astronomical evidence in galaxies and galaxy clusters, recent information provided by X rays (ROSAT satellite) and by observation of MACHOs, to early universe and particle physics solutions to the dark matter problem, including simultaneous solutions to the problems of baryogenesis and dark matter. Beyond the favoured supersymmetric candidates, the more exotic dark matter proposals are also discussed. The experimental section examines the most recent efforts in direct and indirect experiments, including new techniques like cryogenic detectors and superheated droplet detectors, as well as efforts with large scale underground detectors like MACRO, Baksan, Baikal and AMANDA. Also, the potential of present and future (LHC) high energy accelerators is thoroughly discussed. A section on hot dark matter gives the current status of experiments searching for a neutrino mass, like double beta decay and neutrino oscillation experiments, including intermediate scale long baseline experiments.

Prototype Direction Sensitive, Solid-state Dark Matter Detector

Prototype Direction Sensitive, Solid-state Dark Matter Detector PDF Author: Misganaw Getaneh
Publisher:
ISBN:
Category : Physics
Languages : en
Pages : 306

Book Description


Design and Analysis for the DarkSide-10 Two-Phase Argon Time Projection Chamber

Design and Analysis for the DarkSide-10 Two-Phase Argon Time Projection Chamber PDF Author: Christina Elena Love
Publisher:
ISBN:
Category :
Languages : en
Pages : 143

Book Description
Astounding evidence for invisible "dark" matter has been found from galaxy clusters, cosmic and stellar gas motion, gravitational lensing studies, cosmic microwave background analysis, and large scale galaxy surveys. Although all studies indicate that there is a dominant presence of non-luminous matter in the universe (about 22 percent of the total energy density with 5 times more dark matter than baryonic matter), its identity and its "direct" detection (through non-gravitational effects) has not yet been achieved. Dark matter in the form of massive, weakly interacting particles (WIMPs) could be detected through their collisions with target nuclei. This requires detectors to be sensitive to very low-energy (less than 100 keV) nuclear recoils with very low expected rates (a few interactions per year per ton of target). Reducing the background in a direct dark matter detector is the biggest challenge. A detector capable of seeing such low-energy nuclear recoils is difficult to build because of the necessary size and the radio- and chemical- purity. Therefore it is imperative to first construct small-scale prototypes to develop the necessary technology and systems, before attempting to deploy large-scale detectors in underground laboratories. Our collaboration, the DarkSide Collaboration, utilizes argon in two-phase time projection chambers (TPCs). We have designed, built, and commissioned DarkSide-10, a 10 kg prototype detector, and are designing and building DarkSide-50, a 50 kg dark matter detector. The present work is an account of my contribution to these efforts. The two-phase argon TPC technology allows powerful discrimination between dark matter nuclear recoils and background events. Presented here are simulations, designs, and analyses involving the electroluminescence in the gas phase from extracted ionization charge for both DarkSide-10 and DarkSide-50. This work involves the design of the HHV systems, including field cages, that are responsible for producing the electric fields that drift, accelerate, and extract ionization electrons. Detecting the ionization electrons is an essential element of the background discrimination and gives event location using position reconstruction. Based on using COMSOL multiphysics software, the TPC electric fields were simulated. For DarkSide-10 the maximum radial displacement a drifting electron would undergo was found to be 0.2 mm and 1 mm for DarkSide-50. Using the electroluminescence signal from an optical Monte Carlo, position reconstruction in these two-phase argon TPCs was studied. Using principal component analysis paired with a multidimensional fit, position reconstruction resolution for DarkSide-10 was found to be less than 0.5 cm and less than 2.5 cm for DarkSide-50 for events occurring near the walls. DarkSide-10 is fully built and has gone through several campaigns of operation and upgrading both at Princeton University and in an underground laboratory (Gran Sasso National Laboratory in Assergi, Italy). Key DarkSide two-phase argon TPC technologies, such as a successful HHV system, have been demonstrated. Specific studies from DarkSide-10 data including analysis of the field homogeneity and the field dependence on the electroluminescence signal are reported here.

Handbook of Particle Detection and Imaging

Handbook of Particle Detection and Imaging PDF Author: Claus Grupen
Publisher: Springer Science & Business Media
ISBN: 3642132715
Category : Science
Languages : en
Pages : 1251

Book Description
The handbook centers on detection techniques in the field of particle physics, medical imaging and related subjects. It is structured into three parts. The first one is dealing with basic ideas of particle detectors, followed by applications of these devices in high energy physics and other fields. In the last part the large field of medical imaging using similar detection techniques is described. The different chapters of the book are written by world experts in their field. Clear instructions on the detection techniques and principles in terms of relevant operation parameters for scientists and graduate students are given.Detailed tables and diagrams will make this a very useful handbook for the application of these techniques in many different fields like physics, medicine, biology and other areas of natural science.