4D, Matter Gravitino Genomics
arXiv:1812.07680 · doi:10.3390/sym11020217
Abstract
Adinkras are graphs that encode a supersymmetric representation's transformation laws that have been reduced to one dimension, that of time. A goal of the supersymmetry ``genomics'' project is to classify all 4D, off-shell supermultiplets in terms of their adinkras. In~previous works, the genomics project uncovered two fundamental isomer adinkras, the cis- and trans-adinkras, into which all multiplets investigated to date can be decomposed. The number of cis- and trans-adinkras describing a given multiplet define the isomer-equivalence class to which the multiplet belongs. A further refining classification is that of a supersymmetric multiplet's holoraumy: the commutator of the supercharges acting on the representation. The one-dimensionally reduced, matrix representation of a multiplet's holoraumy defines the multiplet's holoraumy-equivalence class. Together, a multiplet's isomer-equivalence and holoraumy-equivalence classes are two of the main characteristics used to distinguish the adinkras associated with different supersymmetry multiplets in higher dimensions. This paper focuses on two matter gravitino formulations, each with 20 bosonic and 20 fermionic off-shell degrees of freedom, analyzes them in terms of their isomer- and holoraumy-equivalence classes, and compares with non-minimal supergravity which is also a 20x20 multiplet. This analysis fills a missing piece in the supersymmetry genomics project, as now the isomer-equivalence and holoraumy-equivalence for representations up to spin two in component fields have been analyzed for 4D, supersymmetry. To handle the calculations of this research effort, we have used the Mathematica software package called Adinkra.m. This package is open-source and available for download at a GitHub Repository. Data files associated with this paper are also published open-source at a Data Repository also on GitHub.
version 3, added self-gadget analysis, edited some text and references, data available at the GitHub Repository https://hepthools.github.io/Data/ that uses the Adinkra.m package available at https://hepthools.github.io/Adinkra/
References in corpus (12)
- Spin Holography via Dimensional Enhancement
- On Clifford-Algebraic "Holoraumy", Dimensional Extension, and SUSY Holography
- The Real Anatomy of Complex Linear Superfields
- A Lorentz Covariant Holoraumy-Induced "Gadget" From Minimal Off-Shell 4D, N = 1 Supermultiplets
- Adinkras, 0-branes, Holoraumy and the SUSY QFT/QM Correspondence
- On General Off-Shell Representations of Worldline (1D) Supersymmetry
- Adinkras From Ordered Quartets of BC Coxeter Group Elements and Regarding 1,358,954,496 Matrix Elements of the Gadget
- Generating all 36,864 Four-Color Adinkras via Signed Permutations and Organizing into - and -Equivalence Classes
- Is It Possible To Embed A 4D, N = 4 Supersymmetric Vector Multiplet Within A Completely Off-Shell Adinkra Hologram?
- Adinkras From Ordered Quartets of BC4 Coxeter Group Elements and Regarding Another Gadget's 1,358,954,496 Matrix Elements
- The Conformal Hyperplet
- A Proposal On Culling & Filtering A Coxeter Group For 4D, N = 1 Spacetime SUSY Representations