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Related papers: 4D, $\mathcal{N}=1$ Matter Gravitino Genomics

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The off-shell representation theory of 4D, $\mathcal{N}=1$ supermultiplets can be categorized in terms of distinct irreducible graphical representations called adinkras as part of a larger effort we call supersymmetry `genomics.' Recent…

High Energy Physics - Theory · Physics 2019-03-12 Isaac Chappell , S. James Gates, , William D. Linch , James Parker , Stephen Randall , Alexander Ridgway , Kory Stiffler

Presented in this paper the nature of the supersymmetrical representation theory behind 4D, N = 1 theories, as described by component fields, is investigated using the tools of Adinkras and Garden Algebras. A survey of familiar matter…

High Energy Physics - Theory · Physics 2009-12-07 S. J. Gates , J. Gonzales , B. MacGregor , J. Parker , R. Polo-Sherk , V. G. J. Rodgers , L. Wassink

Adinkras are graphical representations of the gauge invariant field components in supersymmetric theories and their orbits under the action of supersymmetry (SUSY) generators in the context of supermultiplets. A discussion is given that…

High Energy Physics - Theory · Physics 2024-08-20 S. James Gates, , Youngik , Lee

An adinkra is a graph-theoretic representation of spacetime supersymmetry. Minimal four-color valise adinkras have been extensively studied due to their relations to minimal 4D, $\cal N$ = 1 supermultiplets. Valise adinkras, although an…

High Energy Physics - Theory · Physics 2025-04-28 S. James Gates, , Yangrui Hu , Kory Stiffler

In this paper we discuss off-shell representations of N-extended supersymmetry in one dimension, ie, N-extended supersymmetric quantum mechanics, and following earlier work on the subject codify them in terms of certain graphs, called…

Mathematical Physics · Physics 2012-08-27 C. F. Doran , M. G. Faux , S. J. Gates, , T. Hubsch , K. M. Iga , G. D. Landweber

We continue the development of a theory of off-shell supersymmetric representations analogous to that of compact Lie algebras such as SU(3). For off-shell 4D, N = 1 systems, quark-like representations have been identified [1] in terms of…

High Energy Physics - Theory · Physics 2019-03-13 S. James Gates , Jared Hallett , James Parker , Vincent G. J. Rodgers , Kory Stiffler

Adinkras are a graphical depiction of representations of the N-extended supersymmetry algebra in one dimension, on the worldline. These diagrams represent the component fields in a supermultiplet as vertices, and the action of the…

High Energy Physics - Theory · Physics 2008-11-21 C. F. Doran , M. G. Faux , S. J. Gates , T. Hubsch , K. M. Iga , G. D. Landweber , R. L. Miller

Adinkras are graphical tools created for the study of representations in supersymmetry. Besides having inherent interest for physicists, adinkras offer many easy-to-state and accessible mathematical problems of algebraic, combinatorial, and…

Combinatorics · Mathematics 2011-11-28 Yan X Zhang

Adinkras are a graphical tool for studying off-shell representations of supersymmetry. In this paper we efficiently classify the automorphism groups of Adinkras relative to a set of local parameters. Using this, we classify Adinkras…

High Energy Physics - Theory · Physics 2010-09-09 B. L. Douglas , S. James Gates , Jingbo B. Wang

An Adinkra is a graph from the study of supersymmetry in particle physics, but it can be adapted to study Clifford algebra representations. The graph in this context is called a Cliffordinkra, and puts some standard ideas in Clifford…

Mathematical Physics · Physics 2021-10-06 Kevin Iga

We create an algorithm to determine whether any two graphical representations (adinkras) of equations possessing the property of supersymmetry in one or two dimensions are isomorphic in shape. The algorithm is based on the determinant of…

High Energy Physics - Theory · Physics 2012-12-13 Keith Burghardt , S. James Gates

The Supersymmetry Genomics project aims to classify supermultiplets by properties like adinkras and holoraumy. The project's protocol is: 1) set up the SUSY transformation rules (and action) with unknown numerical coefficients, 2) solve…

High Energy Physics - Theory · Physics 2024-07-03 S. James Gates , Isaiah B. Hilsenrath , Saul Hilsenrath

Adinkras are combinatorial objects developed to study 1-dimensional supersymmetry representations. Recently, 2-d Adinkras have been developed to study 2-dimensional supersymmetry. In this paper, we classify all 2-d Adinkras, confirming a…

High Energy Physics - Theory · Physics 2015-08-04 Kevin Iga , Yan X. Zhang

Recent efforts to classify representations of supersymmetry with no central charge have focused on supermultiplets that are aptly depicted by Adinkras, wherein every supersymmetry generator transforms each component field into precisely one…

High Energy Physics - Theory · Physics 2012-11-29 Tristan Hubsch , Gregory A. Katona

In the study of supersymmetry in one dimension, various works enumerate sets of generators of garden algebras $GR(d,N)$ (and equivalently, valise Adinkras) for special cases $N = d = 4$ and $N = d = 8$, using group-theoretic methods and…

Combinatorics · Mathematics 2018-01-10 Yan X Zhang

Adinkras are combinatorial objects developed to study supersymmetry representations. Gates et al. introduced the "gadget" as a function of pairs of adinkras, obtaining some mysterious results for $(n=4, k=1)$ adinkras with computer-aided…

Combinatorics · Mathematics 2018-12-20 Isaac Friend , Jordan Kostiuk , Yan X Zhang

We examine values of the Adinkra Holoraumy-induced Gadget representation space metric over all possible four-color, four-open node, and four-closed node adinkras. Of the 1,358,954,496 gadget matrix elements, only 226,492,416 are…

High Energy Physics - Theory · Physics 2017-06-28 S. James Gates , Forrest Guyton , Siddhartha Harmalkar , David S. Kessler , Vadim Korotkikh , Victor A. Meszaros

For the first time in the physics literature, the Lorentz representations of all 2,147,483,648 bosonic degrees of freedom and 2,147,483,648 fermionic degrees of freedom in an unconstrained eleven dimensional scalar superfield are presented.…

High Energy Physics - Theory · Physics 2020-09-15 S. James Gates, , Yangrui Hu , S. -N. Hazel Mak

"Pure" homogeneous linear supermultiplets (minimal and non-minimal) of the N=4-Extended one-dimensional Supersymmetry Algebra are classified. "Pure" means that they admit at least one graphical presentation (the corresponding graph/graphs…

High Energy Physics - Theory · Physics 2012-10-22 Marcelo Gonzales , Kevin Iga , Sadi Khodaee , Francesco Toppan

Motivated by the search for embedded on-shell supermultiplets in higher dimensional off-shell theories, we investigate several 16-color supermultiplets and their topology. An Adinkra's topology is known to be equivalent to…

High Energy Physics - Theory · Physics 2025-03-19 Jeth Arunseangroj , Jude Bedessem , S. James Gates, , Gabriel Yerger
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