Scalar Field Theories with Polynomial Shift Symmetries
arXiv:1412.1046 · doi:10.1007/s00220-015-2461-2
Abstract
We continue our study of naturalness in nonrelativistic QFTs of the Lifshitz type, focusing on scalar fields that can play the role of Nambu-Goldstone (NG) modes associated with spontaneous symmetry breaking. Such systems allow for an extension of the constant shift symmetry to a shift by a polynomial of degree in spatial coordinates. These "polynomial shift symmetries" in turn protect the technical naturalness of modes with a higher-order dispersion relation, and lead to a refinement of the proposed classification of infrared Gaussian fixed points available to describe NG modes in nonrelativistic theories. Generic interactions in such theories break the polynomial shift symmetry explicitly to the constant shift. It is thus natural to ask: Given a Gaussian fixed point with polynomial shift symmetry of degree , what are the lowest-dimension operators that preserve this symmetry, and deform the theory into a self-interacting scalar field theory with the shift symmetry of degree ? To answer this (essentially cohomological) question, we develop a new graph-theoretical technique, and use it to prove several classification theorems. First, in the special case of (essentially equivalent to Galileons), we reproduce the known Galileon -point invariants, and find their novel interpretation in terms of graph theory, as an equal-weight sum over all labeled trees with vertices. Then we extend the classification to and find a whole host of new invariants, including those that represent the most relevant (or least irrelevant) deformations of the corresponding Gaussian fixed points, and we study their uniqueness.
70 pages. v2: minor clarifications, typos corrected, a reference added
References in corpus (9)
- Quantum Gravity at a Lifshitz Point
- Membranes at Quantum Criticality
- Horava-Lifshitz Cosmology: A Review
- Lifshitz Gravity for Lifshitz Holography
- Galileons as Wess-Zumino Terms
- General Covariance in Gravity at a Lifshitz Point
- String theory embeddings of non-relativistic field theories and their holographic Horava gravity duals
- Goldstones with Extended Shift Symmetries
- Cascading Multicriticality in Nonrelativistic Spontaneous Symmetry Breaking
Cited by in corpus (61)
- Fracton Phases of Matter
- On-Shell Recursion Relations for Effective Field Theories
- A Periodic Table of Effective Field Theories
- Towards classification of Fracton phases: the multipole algebra
- Fractons, dipole symmetries and curved spacetime
- Global Dipole Symmetry, Compact Lifshitz Theory, Tensor Gauge Theory, and Fractons
- Foliated Quantum Field Theory of Fracton Order
- The dipolar Bose-Hubbard model
- Extended Galilean symmetries of non-relativistic strings
- Hydrodynamics of ideal fracton fluids
- Spectral statistics in constrained many-body quantum chaotic systems
- Spontaneous breaking of multipole symmetries
- Free box^k Scalar Conformal Field Theory
- Shift Symmetries in (Anti) de Sitter Space
- Massive Higher Spins: Effective Theory and Consistency
- Gravity as a gapless phase and biform symmetries
- Partially Massless Higher-Spin Theory
- Lie-algebraic classification of effective theories with enhanced soft limits
- Geometry of Special Galileon
- 2+1d Compact Lifshitz Theory, Tensor Gauge Theory, and Fractons
- Foliated BF theories and Multipole symmetries
- Cascading Multicriticality in Nonrelativistic Spontaneous Symmetry Breaking
- Higher-Rank Tensor Non-Abelian Field Theory: Higher-Moment or Subdimensional Polynomial Global Symmetry, Algebraic Variety, Noether's Theorem, and Gauging
- Emergent generalized symmetries in ordered phases and applications to quantum disordering
- Entanglement Entropy in Generalised Quantum Lifshitz Models
- Non-Abelian Gauged Fracton Matter Field Theory: New Sigma Models, Superfluids and Vortices
- Lifshitz symmetry: Lie algebras, spacetimes and particles
- The Infrared Structure of Exceptional Scalar Theories
- Multipole and fracton topological order via gauging foliated SPT phases
- Theory of Dipole Insulators
- Hierarchical hydrodynamics in long-range multipole-conserving systems
- Nonrelativistic effective field theories with enhanced symmetries and soft behavior
- Shift-Symmetric Spin-1 Theories
- Geometry of Multi-Flavor Galileon-Like Theories
- Bose-Hubbard realization of fracton defects
- Matter Couplings and Equivalence Principles for Soft Scalars
- On-Shell Recursion Relations for Nonrelativistic Effective Field Theories
- Scale without Conformal Invariance in Dipolar Ferromagnets
- Anomaly inflow for dipole symmetry and higher form foliated field theories
- Double screening
- Noninvertible operators in one, two, and three dimensions via gauging spatially modulated symmetry
- Ferromagnets, a New Anomaly, Instantons, and (noninvertible) Continuous Translations
- Solving puzzles of spontaneously broken spacetime symmetries
- Inflation in Flatland
- Surprises with Nonrelativistic Naturalness
- Impossible Symmetries and Conformal Gravity
- Duality, generalized global symmetries and jet space isometries
- Renormalization of Supersymmetric Lifshitz Sigma Models
- Exceptional nonrelativistic effective field theories with enhanced symmetries
- On the Conformal Symmetry of Exceptional Scalar Theories
- Nonrelativistic Short-Distance Completions of a Naturally Light Higgs
- Strings as Hyper-Fractons
- Symmetry breaking in holographic theories with Lifshitz scaling
- Entanglement entropy of higher rank topological phases
- Auxiliary fields approach to shift-symmetric theories: the derivative theory and the crumpled-to-flat transition of membranes at two-loop order
- Shift symmetries and duality web in gauge theories
- Higher-derivative superparticle in AdS space
- Translational symmetries of quadratic lagrangians
- Non-invertible translation from Lieb-Schultz-Mattis anomaly
- Matrix product state classification of 1D multipole symmetry protected topological phases
- Spontaneous Symmetry Breaking and Frustrated Phases