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$\mathbb{CP}^N$-Rosochatius system, superintegrability, supersymmetry
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abstract
We propose new superintegrable mechanical system on the complex projective space $\mathbb{CP}^N$ involving a potential term together with coupling to a constant magnetic fields. This system can be viewed as a $\mathbb{CP}^N$-analog of both the flat singular oscillator and its spherical analog known as "Rosochatius system". We find its constants of motion and calculate their (highly nonlinear) algebra. We also present its classical and quantum solutions. The system belongs to the class of "K\"ahler oscillators" admitting $SU(2|1)$ supersymmetric extension. We show that, in the absence of magnetic field and with the special choice of the characteristic parameters, one can construct $\mathcal{N}=4, d=1$ Poinacar\'e supersymmetric extension of the system considered.
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Generalized MICZ-Kepler systems on three-dimensional sphere and hyperboloid
Curved-space analogs of the generalized MICZ-Kepler system on S³ and the 3D hyperboloid are solved exactly, with two-quantum-number spectra and normalized wavefunctions.
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