The abstract claims a proof that a 3D Weyl-type lattice fermion model with antiferromagnetic interactions shows antiferromagnetic long-range order at low temperature in the strong-coupling regime.
Relative Mather discrepancy on arc spaces
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abstract
Given any generically \'etale morphism of varieties $f \colon X \to Y$, we define the relative Mather discrepancy function on the arc space $X_\infty$ of the domain and show that this function computes the dimension of the kernel of the differential map of the induced morphism on arc spaces $f_\infty \colon X_\infty \to Y_\infty$. We relate this result to the change-of-variable formula in motivic integration. We introduce the notion of $\widehat K$-equivalence, which agrees with $K$-equivalence for smooth varieties, and prove that $\widehat K$-equivalent varieties of arbitrary characteristic define the same class in the motivic ring.
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math-ph 1years
2025 1verdicts
UNVERDICTED 1representative citing papers
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Antiferromagnetic Long-Range Order in a Lattice Fermion Model
The abstract claims a proof that a 3D Weyl-type lattice fermion model with antiferromagnetic interactions shows antiferromagnetic long-range order at low temperature in the strong-coupling regime.