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A. Ranjbar

Publications and source records attributed to A. Ranjbar.

4 recordsLinked to original sources

Semileptonic Decays of Heavy Vector Mesons in Hard-Wall AdS/QCD with $N_{f}=5$

We present a systematic study of semileptonic decays of heavy vector mesons within the Hard-Wall AdS/QCD framework. Semileptonic decays provide a clean environment for testing the Standard Model because the leptonic current is well understood, while the hadronic part is encoded in transition form factors that reflect non-perturbative QCD dynamics. The processes under consideration include: \( ψ\to D^{*-} ( D^{-} ) \ell^{+} ν_{\ell} \), \( D^{*0} \to π^{-} \ell^{+} ν_{\ell} \), \( D^{*+}_{s} \to K^{0} \ell^{+} ν_{\ell} \), \( D^{*0} \to ρ^{-} \ell^{+} ν_{\ell} \), \( B_c^{*+} \to B^{*0} \ell^{+} ν_{\ell} \), \( B_c^{*+} \to ψ\,\ell^{+} ν_{\ell} \), \( B^{*-} \to D^{*0} \ell^{-} \barν_{\ell} \), \( B^{*0} \to D^{*+}(D^{+}) \ell^{-} \barν_{\ell} \), \( B^{*0}_{s} \to D^{*+}_{s} (D^{+}_{s}) \ell^{-} \barν_{\ell} \), \( ψ\to D^{*-}_{s}(D^{-}_{s}) \ell^{+} ν_{\ell} \), \( D^{*0} \to K^{*-} (K^{-}) \ell^{+} ν_{\ell} \), \( B_c^{*-} \to D^{*0} \ell^{-} \barν_{\ell} \), \( \bar{B_{s}}^{*0} \to K^{*+} \ell^{-} \barν_{\ell} \), and \( \bar{B}^{*0} \to ρ^{+} \ell^{-} \barν_{\ell} \). These decays correspond to four different quark-level transitions: \(c\to d\), \(b\to c\), \(c\to s\), and \(b\to u\), allowing us to explore a broad range of flavor dynamics.\\ Using the Hard-Wall AdS/QCD model, we compute the relevant transition form factors as functions of the momentum transfer \(q^{2}\). The framework provides analytic expressions for meson wave functions and decay constants, which serve as inputs for the form-factor calculations. From these form factors, we evaluate the differential and integrated branching ratios for each decay mode. Where possible, we compare our predictions with results obtained from other non-perturbative approaches.

hep-ph↗

The 4 meter New Robotic Telescope project: an updated report

The New Robotic Telescope (NRT) is an international collaboration to build and operate a 4 m diameter fully robotic telescope. The telescope will take advantage of the superb atmospheric conditions at the Observatory of the Roque de los Muchachos (ORM). In conjunction with a large aperture, entirely robotic operation, quick response, and a set of versatile instrumentation in the optical and near-infrared this guarantees a high scientific impact focused mainly in the area of time domain astronomy. This paper presents the scientific motivation and the status of the project, discussing possible technical solutions under evaluation for the optics, mechanics and control system.

astro-ph.IM↗

New Robotic Telescope: The big eye to observe the transient Universe

NRT is an international project to build and operate the world's largest robotic telescope. The telescope will have a segmented primary mirror with an equivalent diameter of 4 m, a set of simultaneously mounted optical and near-infrared instruments, and a response time of less than 30 seconds. The project builds on the experience gained with the successful twenty-year operation of the Liverpool telescope, and with the GTC optics and control system. All of the above together with the excellent conditions for astronomical observation of La Palma, represents a solid base and guarantees that NRT will be one of the leading facilities in the field of time domain astronomy. This contribution will analyze the current status of the project with special emphasis on the development of its optics, and the plans for its construction and operation.

astro-ph.IM↗

Adaptive Backstepping Chaos Synchronization of Fractional order Coullet Systems with Mismatched Parameters

In this paper, synchronization of fractional order Coullet system with precise and also unknown parameters are studied. The proposed method which is based on the adaptive backstepping, has been developed to synchronize two chaotic systems with the same or partially different attractor. Sufficient conditions for the synchronization are analytically obtained. There after an adaptive control law is derived to make the states of two slightly mismatched chaotic Coullet systems synchronized. The stability analysis is then proved using the Lyapunov stability theorem. It is the privilege of the approach that only needs a single controller signal to realize the synchronization task. A numerical simulation verifies the significance of the proposed controller especially for the chaotic synchronization task.

nlin.CD↗