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Massive Scaling Limit of beta-Deformed Matrix Model of Selberg Type

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arxiv 1008.1861 v2 pith:RAF776HL submitted 2010-08-11 hep-th

classification hep-th
keywords lambdamatrixmodelalphabeta-deformedfiniteinftymassive
verification ladder T0 review T1 audit T2 compute T3 formal
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We consider a series of massive scaling limits m_1 -> infty, q -> 0, lim m_1 q = Lambda_{3} followed by m_4 -> infty, Lambda_{3} -> 0, lim m_4 Lambda_{3} = (Lambda_2)^2 of the beta-deformed matrix model of Selberg type (N_c=2, N_f=4) which reduce the number of flavours to N_f=3 and subsequently to N_f=2. This keeps the other parameters of the model finite, which include n=N_L and N=n+N_R, namely, the size of the matrix and the "filling fraction". Exploiting the method developed before, we generate instanton expansion with finite g_s, epsilon_{1,2} to check the Nekrasov coefficients (N_f =3,2 cases) to the lowest order. The limiting expressions provide integral representation of irregular conformal blocks which contains a 2d operator lim frac{1}{C(q)} : e^{(1/2) \alpha_1 \phi(0)}: (int_0^q dz : e^{b_E phi(z)}:)^n : e^{(1/2) alpha_2 phi(q)}: and is subsequently analytically continued.

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  1. Notes on phase structure and non-vanishing $\beta$ functions of one-unitary matrix model

    hep-th 2026-08 conditional novelty 5.0 of 10

    For unitary matrix models with potentials up to cos 3α, the paper infers phase diagrams from classical potential shape and shows beta functions on critical lines are nowhere vanishing, claiming third-order transitions.

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