Search results for " Standard Model"

showing 10 items of 645 documents

Search for axion-like dark matter with spin-based amplifiers

2021

Ultralight axion-like particles (ALPs) are well-motivated dark matter candidates introduced by theories beyond the standard model. However, the constraints on the existence of ALPs through existing laboratory experiments are hindered by their current sensitivities, which are usually weaker than astrophysical limits. Here, we demonstrate a new quantum sensor to search for ALPs in the mass range that spans about two decades from 8.3 feV to 744 feV. Our sensor makes use of hyperpolarized long-lived nuclear spins as a pre-amplifier that effectively enhances coherently oscillating axion-like dark-matter field by a factor of >100. Using spin-based amplifiers, we achieve an ultrahigh magnetic s…

PhysicsParticle physicsQuantum PhysicsPhoton010308 nuclear & particles physicsAtomic Physics (physics.atom-ph)Physics beyond the Standard ModelQuantum sensorDark matterGeneral Physics and AstronomyFOS: Physical sciencesParameter space7. Clean energy01 natural sciencesPhysics - Atomic PhysicsHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)0103 physical sciencesddc:530010306 general physicsNucleonSpin (physics)Quantum Physics (quant-ph)Axion
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Proposal for generalised supersymmetry Les Houches Accord for see-saw models and PDG numbering scheme

2013

The SUSY Les Houches Accord (SLHA) 2 extended the first SLHA to include various generalisations of the Minimal Supersymmetric Standard Model (MSSM) as well as its simplest next-to-minimal version. Here, we propose further extensions to it, to include the most general and well-established see-saw descriptions (types I/II/III, inverse, and linear) in both an effective and a simple gauged extension of the MSSM framework. In addition, we generalise the PDG numbering scheme to reflect the properties of the particles

PhysicsParticle physicsSLHAPDG schemeHigh Energy Physics::PhenomenologyGeneral Physics and AstronomyInverseFOS: Physical sciencesFísicaSupersymmetryExtension (predicate logic)Parameter spaceSee-sawTheoretical physicsHigh Energy Physics - PhenomenologyNumbering schemeHigh Energy Physics - Phenomenology (hep-ph)Hardware and ArchitectureSimple (abstract algebra)Centre for High Energy PhysicsMinimal Supersymmetric Standard Model
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Self-interacting dark matter and cosmology of a light scalar mediator

2016

We consider a fermionic dark matter candidate interacting via a scalar mediator coupled with the Standard Model through a Higgs portal. We consider a general setting including both scalar and pseudoscalar interactions between the scalar and fermion, and illustrate the relevant features for dark matter abundance, direct search limits and collider constraints. The case where dark matter has a self-interaction strength $⟨{\ensuremath{\sigma}}_{V}⟩/{m}_{\ensuremath{\psi}}\ensuremath{\sim}0.1--1\text{ }\text{ }{\mathrm{cm}}^{2}/\mathrm{g}$ is strongly constrained, in particular by the big bang nucleosynthesis. We show that these constraints can be alleviated by introducing a new light sterile ne…

PhysicsParticle physicsStandard Modelta114010308 nuclear & particles physicsHot dark matterPhysics beyond the Standard ModelScalar field dark matterscalar mediators01 natural sciencesdark matterStandard ModelPseudoscalarsterile neutrinosWeakly interacting massive particlesfermions0103 physical sciencesGravitino010306 general physicsLight dark matterPhysical Review D
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Analysis of light neutrino exchange and short-range mechanisms in 0νββ decay

2020

Neutrinoless double beta decay (0νββ) is a crucial test for lepton number violation. Observation of this process would have fundamental implications for neutrino physics, theories beyond the Standard Model and cosmology. Focusing on so-called short-range operators of 0νββ and their potential interplay with the standard light Majorana neutrino exchange, we present the first complete calculation of the relevant nuclear matrix elements, performed within the interacting boson model (IBM-2). Furthermore, we calculate the relevant phase space factors using exact Dirac electron wave functions, taking into account the finite nuclear size and screening by the electron cloud. The obtained numerical r…

PhysicsParticle physicsSterile neutrino010308 nuclear & particles physicsPhysics beyond the Standard ModelHigh Energy Physics::PhenomenologySupersymmetry7. Clean energy01 natural sciencesLepton numberMAJORANADouble beta decay0103 physical sciencesNeutrinoInteracting boson model010306 general physicsPhysical Review
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New opportunities at the next-generation neutrino experiments I: BSM neutrino physics and dark matter

2020

Abstract The combination of the high intensity proton beam facilities and massive detectors for precision measurements of neutrino oscillation parameters including the charge-parity violating (CPV) phase will open the door to help make beyond the standard model (BSM) physics reachable even in low energy regimes in the accelerator-based experiments. Large-mass detectors with highly precise tracking and energy measurements, excellent timing resolution, and low energy thresholds will enable the searches for BSM phenomena from cosmogenic origin, as well. Therefore, it is also conceivable that BSM topics in the next-generation neutrino experiments could be the dominant physics topics in the fore…

PhysicsParticle physicsSterile neutrinoPhysics beyond the Standard ModelDark matterGeneral Physics and AstronomyScale (descriptive set theory)Tracking (particle physics)01 natural sciences0103 physical sciencesDeep Underground Neutrino ExperimentHigh Energy Physics::ExperimentNeutrino010306 general physicsNeutrino oscillationReports on Progress in Physics
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Can we probe intrinsic CP and T violations and nonunitarity at long baseline accelerator experiments?

2017

One of the fundamental parameters entering the neutrino oscillation framework is the leptonic $CP$ phase ${\ensuremath{\delta}}_{13}$, and its measurement is an important goal of the planned long baseline experiments. It should be noted that ordinary matter effects complicate the determination of this parameter, and there are studies in the literature that deal with separation of intrinsic vs extrinsic $CP$ violation. It is important to investigate the consequences of new physics effects that can not only hamper the measurement of ${\ensuremath{\delta}}_{13}$ but also impact the consequences of discrete symmetries such as $CP$, $T$, and unitarity in different oscillation channels. In the pr…

PhysicsParticle physicsSterile neutrinoUnitarity010308 nuclear & particles physicsOscillationPhysics beyond the Standard ModelHigh Energy Physics::Phenomenology01 natural sciences0103 physical sciencesHomogeneous spaceCP violationMeasurements of neutrino speed010306 general physicsNeutrino oscillationPhysical Review D
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R-Parity Breaking in Minimal Supergravity

1999

We consider the Minimal Supergravity Model with universality of scalar and gaugino masses plus an extra bilinear term in the superpotential which breaks R-Parity and lepton number. We explicitly check the consistency of this model with the radiative breaking of the electroweak symmetry. A neutrino mass is radiatively induced, and large Higgs-Lepton mixings are compatible with its experimental bound. We also study briefly the lightest Higgs mass. This one-parameter extension of SUGRA-MSSM is the simplest way of introducing R-parity violation.

PhysicsParticle physicsSupergravityR-parityHigh Energy Physics::PhenomenologyElectroweak interactionGauginoHiggs bosonHigh Energy Physics::ExperimentSupersymmetry breakingLepton numberMinimal Supersymmetric Standard Model
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Search for the Scalar Top Quark inpp¯Collisions ats=1.8TeV

2002

We have performed a search for scalar top quark (stop) pair production in the inclusive electron-muon-missing transverse energy final state, using a sample of p (p) over bar events corresponding to 108.3 pb (-1) of data collected with the D0 detector at Fermilab. The search is done in the framework of the minimal supersymmetric standard model assuming that the sneutrino is the lightest supersymmetric particle. For the dominant decays of the lightest stop, (t) over tilde-->b (χ) over tilde (+)(1) and (t) over tilde-->bl (ν) over tilde , no evidence for signal is found. We derive cross-section limits as a function of stop ((t) over tilde), chargino ((χ) over tilde (+)(1)), and sneutrino ((ν) …

PhysicsParticle physicsTop quark010308 nuclear & particles physicsHigh Energy Physics::PhenomenologyScalar (mathematics)General Physics and AstronomySupersymmetry01 natural sciencesLightest Supersymmetric ParticleNuclear physicsCharginoPair production0103 physical sciencesHigh Energy Physics::ExperimentFermilab010306 general physicsMinimal Supersymmetric Standard ModelPhysical Review Letters
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The W and Z boson spin observables as messengers of New Physics at LHC

2017

The successful LHC operation suggests going beyond the search of excess of events for the quest of new physics. We demonstrate that the eight multipole parameters describing the spin state of the W or Z bosons are able to disentangle their hidden production mechanism. They can be separately extracted from well defined angular asymmetries in the leptonic distribution of boson decays. The discriminating power of this analysis is well illustrated by: (i) polarised top quark decays, (ii) two body decay of heavy resonances, (iii) Drell-Yan production of Z plus jets, (iv) Z boson plus missing transverse energy.

PhysicsParticle physicsTop quarkLarge Hadron ColliderPhysics beyond the Standard ModelHigh Energy Physics::PhenomenologyFOS: Physical sciencesDrell–Yan processObservableHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics::ExperimentMultipole expansionSpin-½BosonProceedings of The European Physical Society Conference on High Energy Physics — PoS(EPS-HEP2017)
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Perturbative Unitarity Constraints on Charged/Colored Portals

2015

Dark matter that was once in thermal equilibrium with the Standard Model is generally prohibited from obtaining all of its mass from the electroweak or QCD phase transitions. This implies a new scale of physics and mediator particles needed to facilitate dark matter annihilations. In this work, we consider scenarios where thermal dark matter annihilates via scalar mediators that are colored and/or electrically charged. We show how partial wave unitarity places upper bounds on the masses and couplings on both the dark matter and mediators. To do this, we employ effective field theories with dark matter as well as three flavors of sleptons or squarks with minimum flavor violation. For Dirac (…

PhysicsParticle physicsUnitarity010308 nuclear & particles physicsPhysics beyond the Standard ModelDark matterElectroweak interactionHigh Energy Physics::PhenomenologyFOS: Physical sciencesAstronomy and Astrophysics01 natural sciencesUpper and lower boundsStandard ModelMAJORANAHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Space and Planetary Science0103 physical sciencesEffective field theoryHigh Energy Physics::Experiment010306 general physics
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