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1

Dudas, Emilian, Mark Goodsell, Lucien Heurtier, and Pantelis Tziveloglou. "Flavour models with Dirac and fake gluinos." Nuclear Physics B 884 (July 2014): 632–71. http://dx.doi.org/10.1016/j.nuclphysb.2014.05.005.

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2

Diessner, Philip, Jan Kalinowski, Wojciech Kotlarski, and Dominik Stöckinger. "Two-Loop Correction to the Higgs Boson Mass in the MRSSM." Advances in High Energy Physics 2015 (2015): 1–12. http://dx.doi.org/10.1155/2015/760729.

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We present the impact of two-loop corrections on the mass of the lightest Higgs boson in the minimalR-symmetric supersymmetric standard model (MRSSM). These shift the Higgs boson mass up by typically 5 GeV or more. The dominant corrections arise from strong interactions, and from the gluon and itsN=2superpartners, the sgluon and Dirac gluino, and these corrections further increase with large Dirac gluino mass. The two-loop contributions governed purely by Yukawa couplings and the MRSSMλ,Λparameters are smaller. We also update our earlier analysis which showed that the MRSSM can accommodate the
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3

Loya, Paul, and Jinsung Park. "On gluing formulas for the spectral invariants of Dirac type operators." Electronic Research Announcements of the American Mathematical Society 11, no. 1 (2005): 1–11. http://dx.doi.org/10.1090/s1079-6762-05-00141-1.

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4

Loya, Paul, and Jinsung Park. "On the gluing problem for the spectral invariants of Dirac operators." Advances in Mathematics 202, no. 2 (2006): 401–50. http://dx.doi.org/10.1016/j.aim.2005.03.012.

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5

Loya, Paul, and Jinsung Park. "On the gluing problem for Dirac operators on manifolds with cylindrical ends." Journal of Geometric Analysis 15, no. 2 (2005): 285–319. http://dx.doi.org/10.1007/bf02922197.

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6

RYANG, SHIJONG. "NONSTATIC AdS2 BRANES AND THE ISOMETRY GROUP OF AdS3 SPACE–TIME." Modern Physics Letters A 17, no. 06 (2002): 309–18. http://dx.doi.org/10.1142/s0217732302006497.

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For the D-branes on the SL (2,R) WZW model we present a particular choice of outer automorphism for the gluing condition of currents that leads to a special AdS2 brane configuration. This configuration is shown to be a static solution in the cylindrical coordinates, and a nonstatic solution in the Poincaré coordinates to the nonlinear equation of motion for the Dirac–Born–Infeld action of a D-string. The generalization of it gives a family of nonstatic AdS2 brane solutions. They are demonstrated to transform to each other under the isometry group of AdS3 space–time.
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7

Mitrokhin, Sergey I. "On the asymptotic behavior of the spectrum of a sixth-order differential operator, whose potential is the delta function." Zhurnal Srednevolzhskogo Matematicheskogo Obshchestva 22, no. 3 (2020): 280–305. http://dx.doi.org/10.15507/2079-6900.22.202003.280-305.

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In this paper we propose a new method for studying differential operators with discontinuous coefficients.We consider a sequence of sixth-order differential operators with piecewise-smooth coefficients. The limit of the sequence of these operators’ potentials is the Dirac delta function. The boundary conditions are separated. To correctly determine solutions of differential equations with discontinuous coefficients at the points of discontinuity, “gluing” conditions are required. Asymptotic solutions were written out for large values of the spectral parameter, with the help of them the “gluing
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8

Epstein, C. L. "Subelliptic boundary conditions for SpinC-Dirac operators, gluing, relative indices, and tame Fredholm pairs." Proceedings of the National Academy of Sciences 103, no. 42 (2006): 15364–69. http://dx.doi.org/10.1073/pnas.0605368103.

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9

Huang, Rung-Tzung, and Yoonweon Lee. "The gluing formula of the zeta-determinants of Dirac Laplacians for certain boundary conditions." Illinois Journal of Mathematics 58, no. 2 (2014): 537–60. http://dx.doi.org/10.1215/ijm/1436275497.

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10

Li, Chuang, Bin Zhu, and Tianjun Li. "Naturalness, dark matter, and the muon anomalous magnetic moment in supersymmetric extensions of the standard model with a pseudo-Dirac gluino." Nuclear Physics B 927 (February 2018): 255–73. http://dx.doi.org/10.1016/j.nuclphysb.2017.12.012.

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11

Lee, Yoonweon. "Burghelea-Friedlander-Kappeler's gluing formula and the adiabatic decomposition of the zeta-determinant of a Dirac Laplacian." manuscripta mathematica 111, no. 2 (2003): 241–59. http://dx.doi.org/10.1007/s00229-003-0370-8.

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12

Diessner, Philip, Wojciech Kotlarski, Sebastian Liebschner, and Dominik Stöckinger. "Squark production in R-symmetric SUSY with Dirac gluinos: NLO corrections." Journal of High Energy Physics 2017, no. 10 (2017). http://dx.doi.org/10.1007/jhep10(2017)142.

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13

Chalons, Guillaume, Mark D. Goodsell, Sabine Kraml, Humberto Reyes-González, and Sophie L. Williamson. "LHC limits on gluinos and squarks in the minimal Dirac gaugino model." Journal of High Energy Physics 2019, no. 4 (2019). http://dx.doi.org/10.1007/jhep04(2019)113.

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14

Arvanitakis, Alex S., and Dimitri Kanakaris. "Localisation without supersymmetry: towards exact results from Dirac structures in 3D N = 0 gauge theory." Journal of High Energy Physics 2024, no. 11 (2024). http://dx.doi.org/10.1007/jhep11(2024)001.

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Abstract We show, by introducing purely auxiliary gluinos and scalars, that the quantum path integral for a class of 3D interacting non-supersymmetric gauge theories localises. The theories in this class all admit a ‘Manin gauge theory’ formulation, that we introduce; it is obtained by enhancing the gauge algebra of the theory to a Dirac structure inside a Manin pair. This machinery allows us to do localisation computations for every theory in this class at once, including for 3D Yang-Mills theory, and for its Third Way deformation; the latter calculation casts the Third Way path integral into
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15

Sirunyan, A. M., A. Tumasyan, W. Adam, et al. "Searches for physics beyond the standard model with the $$M_{\mathrm {T2}}$$ variable in hadronic final states with and without disappearing tracks in proton–proton collisions at $$\sqrt{s}=13\,\text {Te}\text {V} $$." European Physical Journal C 80, no. 1 (2020). http://dx.doi.org/10.1140/epjc/s10052-019-7493-x.

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AbstractTwo related searches for phenomena beyond the standard model (BSM) are performed using events with hadronic jets and significant transverse momentum imbalance. The results are based on a sample of proton–proton collisions at a center-of-mass energy of $$13\,\text {Te}\text {V} $$13Te, collected by the CMS experiment at the LHC in 2016–2018 and corresponding to an integrated luminosity of 137$$\,\text {fb}^{-1}$$fb-1. The first search is inclusive, based on signal regions defined by the hadronic energy in the event, the jet multiplicity, the number of jets identified as originating from
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16

Ding, Ran, Tianjun Li, Florian Staub, Chi Tian, and Bin Zhu. "Supersymmetric standard models with a pseudo-Dirac gluino from hybridF- andD-term supersymmetry breaking." Physical Review D 92, no. 1 (2015). http://dx.doi.org/10.1103/physrevd.92.015008.

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17

Klimek, Slawomir. "A Note on Gluing Dirac Type Operators on a Mirror Quantum Two-Sphere." Symmetry, Integrability and Geometry: Methods and Applications, March 29, 2014. http://dx.doi.org/10.3842/sigma.2014.036.

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18

Suwara, Piotr. "Low-regularity Seiberg–Witten moduli spaces on manifolds with boundary." Selecta Mathematica 29, no. 3 (2023). http://dx.doi.org/10.1007/s00029-023-00845-y.

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AbstractFor a compact spin$$^{c}$$ c manifold X with boundary $$b_1(\partial X)=0$$ b 1 ( ∂ X ) = 0 , we consider moduli spaces of solutions to the Seiberg–Witten equations in a generalized double Coulomb slice in $$W^{1,2}$$ W 1 , 2 Sobolev regularity. We prove they are Hilbert manifolds, prove denseness and “semi-infinite-dimensionality” properties of the restriction to $$\partial X$$ ∂ X , and establish a gluing theorem. To achieve these, we prove a general regularity theorem and a strong unique continuation principle for Dirac operators, and smoothness of a restriction map to configuration
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19

Franco, Emilio, and Robert Hanson. "The Dirac–Higgs Complex and Categorification of (BBB)-Branes." International Mathematics Research Notices, September 6, 2024. http://dx.doi.org/10.1093/imrn/rnae187.

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Abstract Let ${\mathcal{M}}_{\operatorname{Dol}}(X,G)$ denote the hyperkähler moduli space of $G$-Higgs bundles over a smooth projective curve $X$. In the context of four dimensional supersymmetric Yang–Mills theory, Kapustin and Witten introduced the notion of (BBB)-brane: boundary conditions that are compatible with the B-model twist in every complex structure of ${\mathcal{M}}_{\operatorname{Dol}}(X,G)$. The geometry of such branes was initially proposed to be hyperkähler submanifolds that support a hyperholomorphic bundle. Gaiotto has suggested a more general type of (BBB)-brane defined by
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20

Kulkarni, Harshal, and Stuart Raby. "An SU(5) × U(1)′ SUSY GUT with a “vector-like chiral” fourth family to fit all low energy data, including the muon g − 2." Journal of High Energy Physics 2023, no. 5 (2023). http://dx.doi.org/10.1007/jhep05(2023)152.

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Abstract An additional generation of quarks and leptons and their SUSY counterparts, which are vector-like under the Standard Model gauge group but are chiral with respect to the new U(1)3−4 gauge symmetry, are added to the Minimal Supersymmetric Standard Model (MSSM). We show that this model is a GUT and unifies the three SM gauge couplings and also the additional U(1)3−4 coupling at a GUT scale of ≈ 5 × 1016 GeV and explains the experimentally observed deviation of the muon g – 2. We also fit the quark flavor changing processes consistent with the latest experimental data and look at the eff
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21

Andersson, Lars, András László, and Błażej Ruba. "Nilpotent symmetries as a mechanism for Grand Unification." Journal of High Energy Physics 2021, no. 5 (2021). http://dx.doi.org/10.1007/jhep05(2021)240.

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Abstract In the classic Coleman-Mandula no-go theorem which prohibits the unification of internal and spacetime symmetries, the assumption of the existence of a positive definite invariant scalar product on the Lie algebra of the internal group is essential. If one instead allows the scalar product to be positive semi-definite, this opens new possibilities for unification of gauge and spacetime symmetries. It follows from theorems on the structure of Lie algebras, that in the case of unified symmetries, the degenerate directions of the positive semi-definite invariant scalar product have to co
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