Constraining compressed versions of MUED and MSSM using soft tracks at the LHC
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[1] A. Spisak,et al. Stau coannihilation, compressed spectrum, and SUSY discovery potential at the LHC , 2017, 1704.04669.
[2] B. Mukhopādhyāẏa,et al. Search for a compressed supersymmetric spectrum with a light gravitino , 2017, 1704.04617.
[3] D. Choudhury,et al. Universal extra dimensions and the graviton portal to dark matter , 2017, 1703.04985.
[4] Jyotiranjan Beuria,et al. LHC collider phenomenology of minimal universal extra dimensions , 2017, Comput. Phys. Commun..
[5] Jong Soo Kim,et al. Current LHC Constraints on Minimal Universal Extra Dimensions , 2017, 1702.00410.
[6] S. Chakraborty,et al. Chasing new physics in stacks of soft tracks , 2016, 1606.07826.
[7] K. Ghosh,et al. Bounds on universal extra dimension from LHC run I and II data , 2016, 1606.04084.
[8] Atlas Collaboration. Search for new phenomena in final states with an energetic jet and large missing transverse momentum in $pp$ collisions at $\sqrt{s}=13$ TeV using the ATLAS detector , 2016 .
[9] S. Raychaudhuri,et al. Particle Physics of Brane Worlds and Extra Dimensions , 2016 .
[10] Cms Collaboration. Search for supersymmetry in the multijet and missing transverse momentum final state in pp collisions at 13 TeV , 2016, 1602.06581.
[11] B. Mukhopādhyāẏa,et al. A revisit to a compressed supersymmetric spectrum with 125 GeV Higgs , 2015, 1511.09284.
[12] P. Fox,et al. Towards the Final Word on Neutralino Dark Matter , 2015, 1510.03460.
[13] Myeonghun Park,et al. Revealing the jet substructure in a compressed spectrum of new physics , 2015, 1507.07729.
[14] H. Otono,et al. Probing Bino-Wino coannihilation at the LHC , 2015, 1506.08206.
[15] T. Tuuva,et al. Search for dark matter, extra dimensions, and unparticles in monojet events in proton–proton collisions at $$\sqrt{s} = 8$$s=8$$\,{\mathrm{TeV}}\,$$TeV , 2015 .
[16] A. Belyaev,et al. Uncovering Natural Supersymmetry via the interplay between the LHC and direct Dark Matter detection , 2015, Journal of High Energy Physics.
[17] J. Ellis,et al. Gluino coannihilation revisited , 2015, 1503.07142.
[18] Peter Skands,et al. An introduction to PYTHIA 8.2 , 2014, Comput. Phys. Commun..
[19] A. Raychaudhuri,et al. KK-number non-conserving decays: Signal of n=2 excitations of extra-dimensional models at the LHC , 2014, 1410.1463.
[20] H. Baer,et al. Monojet plus soft dilepton signal from light higgsino pair production at LHC14 , 2014, 1409.7058.
[21] Jin Min Yang,et al. New approach for detecting a compressed bino/wino at the LHC , 2014, 1409.4533.
[22] K. Kong,et al. A review on non-minimal universal extra dimensions , 2014, 1408.4024.
[23] L. Roszkowski,et al. Neutralino and gravitino dark matter with low reheating temperature , 2014, 1406.0012.
[24] R. Frederix,et al. The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations , 2014, 1405.0301.
[25] M. Nojiri,et al. Compressed SUSY search at the 13 TeV LHC using kinematic correlations and structure of ISR jets , 2014, 1403.6028.
[26] S. Matsumoto,et al. Gaugino coannihilations , 2014, 1403.0715.
[27] A. Pukhov,et al. micrOMEGAs : a code for the calculation of Dark Matter properties in generic models of particle interaction , 2014, 1402.0787.
[28] Zhenyu Han,et al. Hunting quasidegenerate Higgsinos , 2014, 1401.1235.
[29] J. Zurita,et al. Compressed electroweakino spectra at the LHC , 2013, 1312.7350.
[30] A. Saavedra,et al. Probing light higgsinos in natural SUSY from monojet signals at the LHC , 2013, 1310.4274.
[31] Claude Duhr,et al. FeynRules 2.0 - A complete toolbox for tree-level phenomenology , 2013, Comput. Phys. Commun..
[32] B. Bhattacherjee,et al. Compressed supersymmetry at 14 TeV LHC , 2013, 1308.1526.
[33] J. Favereau,et al. DELPHES 3: a modular framework for fast simulation of a generic collider experiment , 2013, Journal of High Energy Physics.
[34] R. Watanabe,et al. Universal extra dimensions after Higgs discovery , 2013, 1305.1686.
[35] K. Kong,et al. Phenomenology of universal extra dimensions with bulk-masses and brane-localized terms , 2013, 1303.0872.
[36] A. Belyaev,et al. Discovering Minimal Universal Extra Dimensions (MUED) at the LHC , 2012, 1212.4858.
[37] M. Schwartz,et al. Quark and gluon jet substructure , 2012, Journal of High Energy Physics.
[38] S. Forte,et al. Parton distributions with LHC data , 2012, 1207.1303.
[39] M. Kakizaki,et al. Testing Minimal Universal Extra Dimensions Using Higgs Boson Searches at the LHC , 2012, 1207.0798.
[40] A. Datta,et al. Vacuum stability constraints and LHC searches for a model with a universal extra dimension , 2012, 1207.0476.
[41] H. Murayama,et al. Compact Supersymmetry , 2012, 1206.4993.
[42] Saurabh Niyogi,et al. Non-minimal universal extra dimensions: the strongly interacting sector at the Large Hadron Collider , 2012, 1206.3987.
[43] A. Datta,et al. Universal Extra-Dimensional Models with Boundary Localized Kinetic Terms: Probing at the LHC , 2012, 1205.4334.
[44] S. P. Martin,et al. Compressed supersymmetry after 1/fb at the Large Hadron Collider , 2011, 1111.6897.
[45] M. Cacciari,et al. FastJet user manual , 2011, 1111.6097.
[46] A. Datta,et al. Enriching the exploration of the mUED model with event shape variables at the CERN LHC , 2011, 1111.2912.
[47] H. Murayama,et al. Improved discovery of a nearly degenerate model: MUED using MT2 at the LHC , 2011, 1107.3369.
[48] JiJi Fan,et al. Stealth supersymmetry , 2011, 1105.5135.
[49] S. P. Martin,et al. Large Hadron Collider reach for supersymmetric models with compressed mass spectra , 2011, 1105.4304.
[50] Werner Porod,et al. SPheno 3.1: extensions including flavour, CP-phases and models beyond the MSSM , 2011, Comput. Phys. Commun..
[51] B. Bhattacherjee,et al. Search for the minimal universal extra dimension model at the LHC with $\sqrt{s}$=7 TeV , 2010, 1006.3043.
[52] K. Matchev,et al. Minimal universal extra dimensions in CalcHEP/CompHEP , 2010, 1002.4624.
[53] P. Ferrario,et al. Heavy colored resonances in $ t\bar t + {\text{jet}} $ at the LHC , 2009, 0912.0687.
[54] Lorenzo Moneta,et al. ROOT - A C++ framework for petabyte data storage, statistical analysis and visualization , 2009, Comput. Phys. Commun..
[55] A. Datta,et al. Exploring the universal extra dimension at the LHC , 2009, 0904.0937.
[56] F. Siegert,et al. Event generation with SHERPA 1.1 , 2008, 0811.4622.
[57] T. Flacke,et al. Nonminimal universal extra dimensions , 2008, 0811.1598.
[58] S. P. Martin. Exploring compressed supersymmetry with same-sign top quarks at the CERN Large Hadron Collider , 2008, 0807.2820.
[59] M. Cacciari,et al. The anti-$k_t$ jet clustering algorithm , 2008, 0802.1189.
[60] H. Baer,et al. Implications of compressed supersymmetry for collider and dark matter searches , 2007, 0707.0618.
[61] S. P. Martin. Compressed supersymmetry and natural neutralino dark matter from top squark-mediated annihilation to top quarks , 2007, hep-ph/0703097.
[62] M. Wolter,et al. TMVA - Toolkit for Multivariate Data Analysis , 2007, physics/0703039.
[63] D. Hooper,et al. Dark matter and collider phenomenology of universal extra dimensions , 2007, hep-ph/0701197.
[64] Antonio Delgado,et al. The Well-Tempered Neutralino , 2006, hep-ph/0601041.
[65] K. Matchev,et al. Discrimination of supersymmetry and universal extra dimensions at hadron colliders , 2005, hep-ph/0509246.
[66] M. Battaglia,et al. Contrasting Supersymmetry and Universal Extra Dimensions at the CLIC Multi-TeV e+e- Collider , 2005, hep-ph/0502041.
[67] A. Pukhov. CalcHEP 2.3: MSSM, structure functions, event generation, batchs, and generation of matrix elements for other packages , 2004, hep-ph/0412191.
[68] T. Tait,et al. The Higgs mass bound in gauge extensions of the minimal supersymmetric standard model , 2003, hep-ph/0309149.
[69] J. Santiago,et al. Bulk fields with general brane kinetic terms , 2003, hep-th/0302023.
[70] Jonathan L. Feng,et al. Kaluza-Klein dark matter. , 2002, Physical review letters.
[71] G. Servant,et al. Is the Lightest Kaluza-Klein Particle a Viable Dark Matter Candidate? , 2002, hep-ph/0206071.
[72] Hsin-Chia Cheng,et al. Radiative corrections to Kaluza-Klein masses , 2002, hep-ph/0204342.
[73] Bogdan A. Dobrescu,et al. Bounds on Universal Extra Dimensions , 2000, hep-ph/0012100.
[74] J. Schwarz,et al. Spontaneous breaking of supersymmetry through dimensional reduction , 1979 .
[75] S. Moretti,et al. HERWIG 6: an event generator for hadron emission reactions with interfering gluons (including supersymmetric processes) , 2001 .
[76] Terry Elliott,et al. The Next-To -Minimal Supersymmetric Standard Model , 1995 .
[77] J. Schwarz,et al. How to get masses from extra dimensions , 1979 .
[78] F. V. Massoli,et al. Physics reach of the XENON1T dark matter experiment. , 2015, 1512.07501.