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Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at [arrow]"

Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at [arrow]
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Total Pages: 25
Release: 2015
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Download Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at [arrow]" Book in PDF, ePub and Kindle

The many extensions of the Standard Model predict the existence of charged heavy long-lived particles, such as R-hadrons or charginos. If produced at the Large Hadron Collider, these particles should be moving non-relativistically and are therefore identifiable through the measurement of an anomalously large specific energy loss in the ATLAS pixel detector. Measuring heavy long-lived particles through their track parameters in the vicinity of the interaction vertex provides sensitivity to metastable particles with lifetimes from 0.6 ns to 30 ns. A search for such particles with the ATLAS detector at the Large Hadron Collider is presented, based on a data sample corresponding to an integrated luminosity of 18.4 fb-1 of pp collisions at [arrow]"=8 TeV. No significant deviation from the Standard Model background expectation is observed, and lifetime-dependent upper limits on R-hadrons and chargino production are set. Gluino R-hadrons with 10 ns lifetime and masses up to 1185 GeV are excluded at 95 % confidence level, and so are charginos with 15 ns lifetime and masses up to 482 GeV.


Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at ${\sqrt{s}

Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at ${\sqrt{s}
Author:
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Total Pages:
Release: 2015
Genre:
ISBN:

Download Search for Metastable Heavy Charged Particles with Large Ionisation Energy Loss in Pp Collisions at ${\sqrt{s} Book in PDF, ePub and Kindle

Many extensions of the Standard Model predict the existence of charged heavy long-lived particles, such as R-hadrons or charginos. These particles, if produced at the Large Hadron Collider, should be moving non-relativistically and are therefore identifiable through the measurement of an anomalously large specific energy loss in the ATLAS pixel detector. Measuring heavy long-lived particles through their track parameters in the vicinity of the interaction vertex provides sensitivity to metastable particles with lifetimes from 0.6 ns to 30 ns. A search for such particles with the ATLAS detector at the Large Hadron Collider is presented, based on a data sample corresponding to an integrated luminosity of \(18.4\) fb\(^{-1}\) of pp collisions at \(\sqrt{s} = 8\) TeV. No significant deviation from the Standard Model background expectation is observed, and lifetime-dependent upper limits on R-hadrons and chargino production are set. Gluino R-hadrons with 10 ns lifetime and masses up to 1185 GeV are excluded at 95 \(\%\) confidence level, and so are charginos with 15 ns lifetime and masses up to 482 GeV.


Search for Metastable Heavy Charged Particles with Large Ionization Energy Loss in Pp Collisions at S

Search for Metastable Heavy Charged Particles with Large Ionization Energy Loss in Pp Collisions at S
Author:
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Total Pages:
Release: 2016
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ISBN:

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This study presents a search for massive charged long-lived particles produced in pp collisions at √s = 13TeV at the LHC using the ATLAS experiment. The data set used corresponds to an integrated luminosity of 3.2 fb–1. Many extensions of the Standard Model predict the existence of massive charged long-lived particles, such as R-hadrons. These massive particles are expected to be produced with a velocity significantly below the speed of light, and therefore to have a specific ionization higher than any Standard Model particle of unit charge at high momenta. The Pixel subsystem of the ATLAS detector is used to measure the ionization energy loss of reconstructed charged particles and to search for such highly ionizing particles. The search presented here has much greater sensitivity than a similar search performed using the ATLAS detector in the √s = 8TeV data set, thanks to the increase in expected signal cross section due to the higher center-of-mass energy of collisions, to an upgraded detector with a new silicon layer close to the interaction point, and to analysis improvements. No significant deviation from Standard Model background expectations is observed, and lifetime-dependent upper limits on R-hadron production cross sections and masses are set. Gluino R-hadrons with lifetimes above 0.4 ns and decaying to qq¯ plus a 100 GeV neutralino are excluded at the 95% confidence level, with lower mass limit ranging between 740 and 1590 GeV. In the case of stable R-hadrons the lower mass limit at the 95% confidence level is 1570 GeV.


Search for Heavy Long-lived Multi-charged Particles in Pp Collisions at [arrow]"

Search for Heavy Long-lived Multi-charged Particles in Pp Collisions at [arrow]
Author:
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Total Pages:
Release: 2015
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ISBN:

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A search for heavy long-lived multi-charged particles is performed using the ATLAS detector at the LHC. Data collected in 2012 at [arrow]" = 8 TeV from pp collisions corresponding to an integrated luminosity of 20.3 fb-1 are examined. Particles producing anomalously high ionisation, consistent with long-lived massive particles with electric charges from.


Search for Multiply Charged Heavy Stable Charged Particles in Data Collected with the CMS Detector

Search for Multiply Charged Heavy Stable Charged Particles in Data Collected with the CMS Detector
Author:
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Total Pages: 177
Release: 2013
Genre:
ISBN:

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Several models of new physics yield particles that are massive, long-lived, and have an electric charge, Q, greater than that of the electron, e. A search for evidence of such particles was performed using 5.0 fb-1 and 18.8 fb-1 of proton-proton collision data collected at √s = 7 TeV and √s = 8 TeV, respectively, with the Compact Muon Solenoid detector at the Large Hadron Collider. The distinctive detector signatures of these particles are that they are slow-moving and highly ionizing. Ionization energy loss and time-of- flight measurements were made using the inner tracker and the muon system, respectively. The search is sensitive to 1e ≤


Search for Long-lived Charged Particles in Proton-proton Collisions at [math Display

Search for Long-lived Charged Particles in Proton-proton Collisions at [math Display
Author:
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Total Pages:
Release: 2016
Genre:
ISBN:

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Results are presented of a search for heavy stable charged particles produced in proton-proton collisions at √s = 13 TeV using a data sample corresponding to an integrated luminosity of 2.5 fb-1 collected in 2015 with the CMS detector at the CERN LHC. The search is conducted using signatures of anomalously high energy deposits in the silicon tracker and long time-of-flight measurements by the muon system. The data are consistent with the expected background, and upper limits are set on the cross sections for production of long-lived gluinos, top squarks, tau sleptons, and lepton-like long-lived fermions. These upper limits are equivalently expressed as lower limits on the masses of new states; the limits for gluinos, ranging up to 1610 GeV, are the most stringent to date. Furthermore, limits on the cross sections for direct pair production of long-lived tau sleptons are also determined.


A Search for Long-Lived, Charged, Supersymmetric Particles Using Ionization with the ATLAS Detector

A Search for Long-Lived, Charged, Supersymmetric Particles Using Ionization with the ATLAS Detector
Author: Bradley Dean Axen
Publisher:
Total Pages: 184
Release: 2016
Genre:
ISBN:

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Several extensions of the Standard Model predict the existence of charged, very massive, and long-lived particles. Because of their high masses these particles would propagate non-relativistically through the ATLAS pixel detector and would therefore be identifiable through a measurement of large specific energy loss. Measuring heavy, long-lived particles through their track parameters in the pixel detector allows sensitivity to particles with lifetimes in the nanosecond range and above. This dissertation presents an inner detector driven method for identifying such particles in proton-proton collisions at 13 TeV with the 2015 LHC dataset corresponding to an integrated luminosity of 3.5 pb-1.