The asymmetric lambda-deformed SO(n+1)/SO(n) coset model is equivalent to the symmetric lambda-deformed model under the coordinate and parameter transformation theta -> pi - theta, lambda -> -lambda.
A new class of integrable deformations of CFTs
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abstract
We construct a new class of integrable $\sigma$-models based on current algebra theories for a general semisimple group $G$ by utilizing a left-right asymmetric gauging. Their action can be thought of as the all-loop effective action of two independent WZW models for $G$ both at level $k$, perturbed by current bilinears mixing the different WZW models. A non-perturbative symmetry in the couplings parametric space is revealed. We perform the Hamiltonian analysis of the action and demonstrate integrability in several cases. We extend our construction to deformations of $G/H$ CFTs and show integrability when $G/H$ is a symmetric space. Our method resembles that used for constructing the $\lambda$-deformed integrable $\sigma$-models, but the results are distinct and novel.
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Asymmetric $\lambda$-deformed cosets
The asymmetric lambda-deformed SO(n+1)/SO(n) coset model is equivalent to the symmetric lambda-deformed model under the coordinate and parameter transformation theta -> pi - theta, lambda -> -lambda.