Search for dark matter and other new phenomena in events with an energetic jet and large missing transverse momentum using the ATLAS detector

Journal of High Energy Physics Springer Verlag 2018 (2018) 126

Authors:

M Aaboud, G Aad, B Abbott, Giacomo Artoni, Alan Barr, Kathrin Becker, Lydia Beresford, Daniela Bortoletto, Amanda Cooper-Sarkar, JA Frost, Elizabeth Gallas, Claire Gwenlan, F Giuli, Christopher Hays, Todd Huffman, Cigdem Issever, Jesse Liu, Luigi Marchese, Koichi Nagai, ME Nelson, Richard Nickerson, Ian Shipsey, Georg Viehhauser, Jeffrey Tseng, Anthony Weidberg, Gabija Zemaityte

Abstract:

Results of a search for new phenomena in final states with an energetic jet and large missing transverse momentum are reported. The search uses proton-proton collision data corresponding to an integrated luminosity of 36.1 fb−1 at a centre-of-mass energy of 13 TeV collected in 2015 and 2016 with the ATLAS detector at the Large Hadron Collider. Events are required to have at least one jet with a transverse momentum above 250 GeV and no leptons (e or μ). Several signal regions are considered with increasing requirements on the missing transverse momentum above 250 GeV. Good agreement is observed between the number of events in data and Standard Model predictions. The results are translated into exclusion limits in models with pair-produced weakly interacting dark-matter candidates, large extra spatial dimensions, and supersymmetric particles in several compressed scenarios.

Search for $W' \rightarrow tb$ decays in the hadronic final state using pp collisions at $\sqrt{s}=13$ TeV with the ATLAS detector

ArXiv 1801.07893 (2018)

Search for High-Mass Resonances Decaying to $τν$ in $pp$ Collisions at $\sqrt{s}$ = 13 TeV with the ATLAS Detector

ArXiv 1801.06992 (2018)

Tevatron Run II combination of the effective leptonic electroweak mixing angle

ArXiv 1801.06283 (2018)

Authors:

CDF Collaboration, D0 Collaboration

Ultracold atoms in multiple radio-frequency dressed adiabatic potentials

Physical Review A American Physical Society 97:1 (2018) 013616

Authors:

TL Harte, E Bentine, K Luksch, Adam Barker, D Trypogeorgos, B Yuen, CJ Foot

Abstract:

We present the first experimental demonstration of a multiple-radiofrequency dressed potential for the configurable magnetic confinement of ultracold atoms. We load cold \Rb{87} atoms into a double well potential with an adjustable barrier height, formed by three radiofrequencies applied to atoms in a static quadrupole magnetic field. Our multiple-radiofrequency approach gives precise control over the double well characteristics, including the depth of individual wells and the height of the barrier, and enables reliable transfer of atoms between the available trapping geometries. We have characterised the multiple-radiofrequency dressed system using radiofrequency spectroscopy, finding good agreement with the eigenvalues numerically calculated using Floquet theory. This method creates trapping potentials that can be reconfigured by changing the amplitudes, polarizations and frequencies of the applied dressing fields, and easily extended with additional dressing frequencies.