Quantum duality principle and quantum symmetric pairs

Fuente: arXiv
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Autore principale: Song, Jinfeng
Natura: Preprint
Pubblicazione: 2024
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author Song, Jinfeng
author_facet Song, Jinfeng
contents The quantum duality principal (QDP) by Drinfeld predicts a connection between the quantized universial enveloping algebras and the quantized coordinate algebras, where the underlying classical objects are related by the duality in Poisson geometry. The current paper gives an explicit formulization of the QDP for quantum symmetric pairs. Let $\mathfrak{g}$ be a complex semi-simple Lie algebra, equipped with the standard Lie bialgebra structure. Let $θ$ be a Lie algebra involution on $\mathfrak{g}$ and denote by $\mathfrak{k}=\mathfrak{g}^θ$ the fixed point subalgebra. The quantum symmetric pair $(\mathrm{U},\mathrm{U}^\imath)$ is originally defined to be a quantization of the symmetric pair of the universial enveloping algebras $(U(\mathfrak{g}),U(\mathfrak{k}))$. In this paper, we show that an explicit specialisation of $(\mathrm{U},\mathrm{U}^\imath)$ gives rise to the pair of the coordinate algebras $(\mathcal{O}(G^*),\mathcal{O}(K^\perp\backslash G^*))$, where $G^*$ is the dual Poisson-Lie group with the Lie algebra $\mathfrak{g}^*$, and $K^\perp\backslash G^*$ is a $G^*$-Poisson homogeneous space. Here $K^\perp$ is the closed subgroup of $G^*$associated to the complementary dual of $\mathfrak{k}$. Therefore $(\mathrm{U},\mathrm{U}^\imath)$ can be viewed as a pair of quantized coordinate algebras. This generalises the well-known fact that the quantum group $\mathrm{U}$ provides a quantization of the coordinate algebra $\mathcal{O}(G^*)$.
format Preprint
id arxiv_https___arxiv_org_abs_2403_05167
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum duality principle and quantum symmetric pairs
Song, Jinfeng
Quantum Algebra
Representation Theory
The quantum duality principal (QDP) by Drinfeld predicts a connection between the quantized universial enveloping algebras and the quantized coordinate algebras, where the underlying classical objects are related by the duality in Poisson geometry. The current paper gives an explicit formulization of the QDP for quantum symmetric pairs. Let $\mathfrak{g}$ be a complex semi-simple Lie algebra, equipped with the standard Lie bialgebra structure. Let $θ$ be a Lie algebra involution on $\mathfrak{g}$ and denote by $\mathfrak{k}=\mathfrak{g}^θ$ the fixed point subalgebra. The quantum symmetric pair $(\mathrm{U},\mathrm{U}^\imath)$ is originally defined to be a quantization of the symmetric pair of the universial enveloping algebras $(U(\mathfrak{g}),U(\mathfrak{k}))$. In this paper, we show that an explicit specialisation of $(\mathrm{U},\mathrm{U}^\imath)$ gives rise to the pair of the coordinate algebras $(\mathcal{O}(G^*),\mathcal{O}(K^\perp\backslash G^*))$, where $G^*$ is the dual Poisson-Lie group with the Lie algebra $\mathfrak{g}^*$, and $K^\perp\backslash G^*$ is a $G^*$-Poisson homogeneous space. Here $K^\perp$ is the closed subgroup of $G^*$associated to the complementary dual of $\mathfrak{k}$. Therefore $(\mathrm{U},\mathrm{U}^\imath)$ can be viewed as a pair of quantized coordinate algebras. This generalises the well-known fact that the quantum group $\mathrm{U}$ provides a quantization of the coordinate algebra $\mathcal{O}(G^*)$.
title Quantum duality principle and quantum symmetric pairs
topic Quantum Algebra
Representation Theory
url https://arxiv.org/abs/2403.05167