Search results for "CTL"

showing 10 items of 521 documents

"Table 2" of "Search for a heavy top-quark partner in final states with two leptons with the ATLAS detector at the LHC"

2012

(1) Acceptance of the same flavour selection for the scalar top signal grid (2) Selection efficiency of the same flavour selection for the scalar top signal grid (3) Product of the acceptance and efficiency of the same flavour selection for the scalar top signal grid (4) Relative experimental uncertainties on the acceptance times efficiency of the same flavour selection for the scalar top signal grid.

InclusiveNonlinear Sciences::Exactly Solvable and Integrable SystemsProton-Proton ScatteringHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyPhysics::Atomic and Molecular ClustersTop7000.0Jet ProductionP P --> 2LEPTON JETS XACCComputer Science::Computers and Society
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"Table 3" of "Search for a heavy top-quark partner in final states with two leptons with the ATLAS detector at the LHC"

2012

(1) Acceptance of the different flavour selection for the scalar top signal grid (2) Selection efficiency of the different flavour selection for the scalar top signal grid (3) Product of the acceptance and efficiency of the different flavour selection for the scalar top signal grid (4) Relative experimental uncertainties on the acceptance times efficiency of the different flavour selection for the scalar top signal grid.

InclusiveNonlinear Sciences::Exactly Solvable and Integrable SystemsProton-Proton ScatteringHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyPhysics::Atomic and Molecular ClustersTop7000.0Jet ProductionP P --> 2LEPTON JETS XACCComputer Science::Computers and Society
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"Table 6" of "Search for a heavy top-quark partner in final states with two leptons with the ATLAS detector at the LHC"

2012

(1) Acceptance of the different flavour selection for the spin 1/2 top partner signal grid (2) Selection efficiency of the different flavour selection for the spin 1/2 top partner signal grid (3) Product of the acceptance and efficiency of the different flavour selection for the spin 1/2 top partner signal grid (4) Relative experimental uncertainties on the acceptance times efficiency of the different flavour selection for the spin 1/2 top partner signal grid.

InclusiveNonlinear Sciences::Exactly Solvable and Integrable SystemsProton-Proton ScatteringHigh Energy Physics::LatticePhysics::Atomic and Molecular ClustersTop7000.0Jet ProductionP P --> 2LEPTON JETS XACC
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"Table 7" of "Search for new phenomena in final states with large jet multiplicities and missing transverse momentum using sqrt(s)=7 TeV pp collision…

2011

Observed and predicted jet multiplicity distribution for jets with PT > 55 Gev in the Top Control Region.

InclusiveNonlinear Sciences::Exactly Solvable and Integrable SystemsProton-Proton ScatteringP P --> JETS XAstrophysics::High Energy Astrophysical PhenomenaPhysics::Atomic and Molecular Clusters7000.0High Energy Physics::ExperimentJet ProductionNNuclear Experiment
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"Table 8" of "Search for new phenomena in final states with large jet multiplicities and missing transverse momentum using sqrt(s)=7 TeV pp collision…

2011

Observed and predicted jet multiplicity distribution for jets with PT > 80 Gev in the Top Control Region.

InclusiveNonlinear Sciences::Exactly Solvable and Integrable SystemsProton-Proton ScatteringP P --> JETS XAstrophysics::High Energy Astrophysical PhenomenaPhysics::Atomic and Molecular Clusters7000.0High Energy Physics::ExperimentJet ProductionNNuclear Experiment
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"Table 1" of "Measurement of the differential cross-section of highly boosted top quarks as a function of their transverse momentum in $\sqrt{s}$ = 8…

2016

Fiducial particle-level differential cross-section, with statistical and systematic uncertainties, as a function of the top-jet candidate p_T.

InclusiveSingle Differential Cross SectionNonlinear Sciences::Exactly Solvable and Integrable Systems8000.0Proton-Proton ScatteringPhysics::Atomic and Molecular ClustersTopHigh Energy Physics::ExperimentDSIG/DPTNuclear ExperimentTransverse Momentum DependenceP P --> TOP TOPBAR X
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"Table 2" of "Measurement of differential $t\bar{t}$ production cross sections in $p\bar{p}$ collisions"

2014

The differential cross section as a function of the invariant mass of the top quark-antiquark pair, M(TOP + TOPBAR).

InclusiveSingle Differential Cross SectionNonlinear Sciences::Exactly Solvable and Integrable SystemsDSIG/DMHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyPBAR P --> TOP TOPBAR XPhysics::Atomic and Molecular Clusters1960.0Computer Science::Computers and Society
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"Table 4" of "Measurement of differential $t\bar{t}$ production cross sections in $p\bar{p}$ collisions"

2014

The differential cross section as a function of the transverse momentum of the top quark/antiquark, PT(TOP/TOPBAR).

InclusiveSingle Differential Cross SectionNonlinear Sciences::Exactly Solvable and Integrable SystemsHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyPBAR P --> TOP TOPBAR XPhysics::Atomic and Molecular ClustersDSIG/DPTTransverse Momentum Dependence1960.0Computer Science::Computers and Society
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Updated insights into the mechanism of action and clinical profile of the immunoadjuvant QS-21: A review

2019

Background Vaccine adjuvants are compounds that significantly enhance/prolong the immune response to a co-administered antigen. The limitations of the use of aluminium salts that are unable to elicite cell responses against intracellular pathogens such as those causing malaria, tuberculosis, or AIDS, have driven the development of new alternative adjuvants such as QS-21, a triterpene saponin purified from Quillaja saponaria. Purpose The aim of this review is to attempt to clarify the mechanism of action of QS-21 through either receptors or signaling pathways in vitro and in vivo with special emphasis on the co-administration with other immunostimulants in new adjuvant formulations, called a…

InflammasomesT-Lymphocytesmedicine.medical_treatmentHerpes zosterPharmaceutical ScienceMonophosphoryl Lipid AAPCs antigen presenting cellsMiceCMI cell mediated immunity0302 clinical medicineDrug DiscoveryHerpes Zoster VaccineMedicineNSCLC non small cell lung carcinomaCancerImmunity CellularVaccines Synthetic0303 health sciencesImmunogenicityIl-2 interleukine 2HIV human immunodeficiency virusLipid A030220 oncology & carcinogenesisCytokinesMolecular MedicineDCs dendritic cellsNK natural killerAdjuvantTLR Toll-like receptorHerpes Zoster VaccineCD cluster of differentiationAntigen-Presenting CellsCTL cytotoxic T lymphocytesHZ herpes zosterMPL 3-deacylated monophosphoryl lipidVaccine adjuvantImmunoadjuvantArticleVZV varicella zoster virus03 medical and health sciencesImmune systemAdjuvants ImmunologicAntigenPAMPs pathogen-associated molecular patternsMalaria VaccinesPRRs pathogen recognition receptorsQS-21 Quillaja saponaria Molina-fraction 21AnimalsMHC major histocompatibility complexMtb Mycobacterium tuberculosis bacteriaSARS severe acute respiratory syndromeAntigen-presenting cellIFN-γ interferon-gamma030304 developmental biologyPharmacologybusiness.industryA-β amyloid-betaTNF-α tumor necrosis factor-alphaSaponinsQS-21MalariaQuillaja saponariaComplementary and alternative medicineTCR T-cell receptorLiposomesImmunologyKLH keyhole limpet hemocyaninbusinessdLN draining lymph nodesMAPK mitogen activated protein kinasePhytomedicine
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Optical Soliton Molecules in Fiber Lasers

2006

Recent experiments demonstrate that fiber laser cavities are able to support various multisoliton complexes, analogous to soliton molecules, which could have impact on optical information transmission or storage. These advances are guided by the concept of dissipative soliton.

Information transmissionMaterials sciencebusiness.industryFiber nonlinear opticsPhysics::Optics01 natural sciences3. Good health010309 opticsDissipative solitonNonlinear Sciences::Exactly Solvable and Integrable SystemsOpticsFiber laser0103 physical sciencesLaser mode lockingOptoelectronicsMoleculeSoliton010306 general physicsbusinessNonlinear Sciences::Pattern Formation and SolitonsErbium doped fiber lasersComputingMilieux_MISCELLANEOUS
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