Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at [math Display

Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at [math Display
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ISBN-10 : OCLC:951621517
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Synopsis Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at [math Display by :

We present measurements of spin correlation in top quark pair production using data collected with the ATLAS detector at the LHC with proton-proton collisions at a center-of-mass energy of 7 TeV, corresponding to an integrated luminosity of 4.6 fb1. Events are selected in final states with two charged leptons and at least two jets and in final states with one charged lepton and at least four jets. Four different observables sensitive to different properties of the top quark pair production mechanism are used to extract the correlation between the top and antitop quark spins. Some of these observables are measured for the first time. The measurements are in good agreement with the Standard Model prediction at next-to-leading-order accuracy.

Physics Briefs

Physics Briefs
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Publisher :
Total Pages : 1162
Release :
ISBN-10 : UOM:39015027832966
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Rating : 4/5 (66 Downloads)

Synopsis Physics Briefs by :

Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at S

Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at S
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ISBN-10 : OCLC:1066634275
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Rating : 4/5 (75 Downloads)

Synopsis Measurements of Spin Correlation in Top-antitop Quark Events from Proton-proton Collisions at S by :

We present measurements of spin correlation in top quark pair production using data collected with the ATLAS detector at the LHC with proton-proton collisions at a center-of-mass energy of 7 TeV, corresponding to an integrated luminosity of 4.6 fb−1. Events are selected in final states with two charged leptons and at least two jets and in final states with one charged lepton and at least four jets. Four different observables sensitive to different properties of the top quark pair production mechanism are used to extract the correlation between the top and antitop quark spins. Some of these observables are measured for the first time. The measurements are in good agreement with the Standard Model prediction at next-to-leading-order accuracy.

Looking Inside Jets

Looking Inside Jets
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Publisher : Springer
Total Pages : 210
Release :
ISBN-10 : 9783030157098
ISBN-13 : 3030157091
Rating : 4/5 (98 Downloads)

Synopsis Looking Inside Jets by : Simone Marzani

This concise primer reviews the latest developments in the field of jets. Jets are collinear sprays of hadrons produced in very high-energy collisions, e.g. at the LHC or at a future hadron collider. They are essential to and ubiquitous in experimental analyses, making their study crucial. At present LHC energies and beyond, massive particles around the electroweak scale are frequently produced with transverse momenta that are much larger than their mass, i.e., boosted. The decay products of such boosted massive objects tend to occupy only a relatively small and confined area of the detector and are observed as a single jet. Jets hence arise from many different sources and it is important to be able to distinguish the rare events with boosted resonances from the large backgrounds originating from Quantum Chromodynamics (QCD). This requires familiarity with the internal properties of jets, such as their different radiation patterns, a field broadly known as jet substructure. This set of notes begins by providing a phenomenological motivation, explaining why the study of jets and their substructure is of particular importance for the current and future program of the LHC, followed by a brief but insightful introduction to QCD and to hadron-collider phenomenology. The next section introduces jets as complex objects constructed from a sequential recombination algorithm. In this context some experimental aspects are also reviewed. Since jet substructure calculations are multi-scale problems that call for all-order treatments (resummations), the bases of such calculations are discussed for simple jet quantities. With these QCD and jet physics ingredients in hand, readers can then dig into jet substructure itself. Accordingly, these notes first highlight the main concepts behind substructure techniques and introduce a list of the main jet substructure tools that have been used over the past decade. Analytic calculations are then provided for several families of tools, the goal being to identify their key characteristics. In closing, the book provides an overview of LHC searches and measurements where jet substructure techniques are used, reviews the main take-home messages, and outlines future perspectives.

Measurement of Spin Correlation Between Top and Antitop Quarks Produced in $p\bar{p}$ Collisions at $\sqrt{s}

Measurement of Spin Correlation Between Top and Antitop Quarks Produced in $p\bar{p}$ Collisions at $\sqrt{s}
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ISBN-10 : OCLC:946823734
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Rating : 4/5 (34 Downloads)

Synopsis Measurement of Spin Correlation Between Top and Antitop Quarks Produced in $p\bar{p}$ Collisions at $\sqrt{s} by :

We present a measurement of the correlation between the spins of t and tbar quarks produced in proton-antiproton collisions at the Tevatron Collider at a center-of-mass energy of 1.96 TeV. We apply a matrix element technique to dilepton and single-lepton+jets final states in data accumulated with the D0 detector that correspond to an integrated luminosity of 9.7 fb$^{-1}$. The measured value of the correlation coefficient in the off-diagonal basis, $O_{off} = 0.89 \pm 0.22$ (stat + syst), is in agreement with the standard model prediction, and represents evidence for a top-antitop quark spin correlation difference from zero at a level of 4.2 standard deviations.

Measurement of Spin Correlation in Top-Antitop Quark Events and Search for Top Squark Pair Production in Pp Collisions at S

Measurement of Spin Correlation in Top-Antitop Quark Events and Search for Top Squark Pair Production in Pp Collisions at S
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ISBN-10 : OCLC:1066674740
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Rating : 4/5 (40 Downloads)

Synopsis Measurement of Spin Correlation in Top-Antitop Quark Events and Search for Top Squark Pair Production in Pp Collisions at S by :

We present a measurement of spin correlation in t¯t production using data collected with the ATLAS detector at the Large Hadron Collider in proton-proton collisions at a center-of-mass energy of 8 TeV, corresponding to an integrated luminosity of 20.3 fb−1. The correlation between the top and antitop quark spins is extracted from dilepton t¯t events by using the difference in the azimuthal angle between the two charged leptons in the laboratory frame. In the helicity basis the measured degree of correlation corresponds to Ahelicity = 0.38±0.04, in agreement with the standard model prediction. A search is performed for pair production of top squarks with masses close to the top quark mass decaying to predominantly right-handed top quarks and a light neutralino, the lightest supersymmetric particle. Lastly, top squarks with masses between the top quark mass and 191 GeV are excluded at the 95% confidence level.

Spin Correlations in Tt Events from Pp Collisions

Spin Correlations in Tt Events from Pp Collisions
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Total Pages : 0
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ISBN-10 : 3319189336
ISBN-13 : 9783319189338
Rating : 4/5 (36 Downloads)

Synopsis Spin Correlations in Tt Events from Pp Collisions by : Boris Lemmer

This thesis introduces readers to the Standard Model, the top quark and its properties, before explaining the concept of spin correlation measurement. The first measurement of top quark spin correlations at the LHC in the lepton+jets decay channel is presented. As the heaviest elementary particle, the top quark plays an essential role in the Standard Model of elementary particle physics. In the case of top quarks being produced in pairs at hadron colliders, the Standard Model predicts their spins to be correlated. The degree of correlation depends on both the production mechanism and properties of the top quark. Any deviation from the Standard Model prediction can be an indicator for new physics phenomena. The thesis employs an advanced top quark reconstruction algorithm including dedicated identification of the up- and down-type quarks from the W boson decay.

Multiple Parton Interactions At The Lhc

Multiple Parton Interactions At The Lhc
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Publisher : World Scientific Publishing
Total Pages : 471
Release :
ISBN-10 : 9789813227774
ISBN-13 : 981322777X
Rating : 4/5 (74 Downloads)

Synopsis Multiple Parton Interactions At The Lhc by : Paolo Bartalini

Many high-energy collider experiments (including the current Large Hadron Collider at CERN) involve the collision of hadrons. Hadrons are composite particles consisting of partons (quarks and gluons), and this means that in any hadron-hadron collision there will typically be multiple collisions of the constituents — i.e. multiple parton interactions (MPI). Understanding the nature of the MPI is important in terms of searching for new physics in the products of the scatters, and also in its own right to gain a greater understanding of hadron structure. This book aims at providing a pedagogical introduction and a comprehensive review of different research lines linked by an involvement of MPI phenomena. It is written by pioneers as well as young leading scientists, and reviews both experimental findings and theoretical developments, discussing also the remaining open issues.

Mass and Motion in General Relativity

Mass and Motion in General Relativity
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Publisher : Springer Science & Business Media
Total Pages : 634
Release :
ISBN-10 : 9789048130153
ISBN-13 : 9048130158
Rating : 4/5 (53 Downloads)

Synopsis Mass and Motion in General Relativity by : Luc Blanchet

From the infinitesimal scale of particle physics to the cosmic scale of the universe, research is concerned with the nature of mass. While there have been spectacular advances in physics during the past century, mass still remains a mysterious entity at the forefront of current research. Our current perspective on gravitation has arisen over millennia, through the contemplation of falling apples, lift thought experiments and notions of stars spiraling into black holes. In this volume, the world’s leading scientists offer a multifaceted approach to mass by giving a concise and introductory presentation based on insights from their respective fields of research on gravity. The main theme is mass and its motion within general relativity and other theories of gravity, particularly for compact bodies. Within this framework, all articles are tied together coherently, covering post-Newtonian and related methods as well as the self-force approach to the analysis of motion in curved space-time, closing with an overview of the historical development and a snapshot on the actual state of the art. All contributions reflect the fundamental role of mass in physics, from issues related to Newton’s laws, to the effect of self-force and radiation reaction within theories of gravitation, to the role of the Higgs boson in modern physics. High-precision measurements are described in detail, modified theories of gravity reproducing experimental data are investigated as alternatives to dark matter, and the fundamental problem of reconciling any theory of gravity with the physics of quantum fields is addressed. Auxiliary chapters set the framework for theoretical contributions within the broader context of experimental physics. The book is based upon the lectures of the CNRS School on Mass held in Orléans, France, in June 2008. All contributions have been anonymously refereed and, with the cooperation of the authors, revised by the editors to ensure overall consistency.