Publications

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2008
Kar, S, Ho YK.  2008.  Photodetachment of the positronium negative ion interacting with screened Coulomb (Yukawa) potentials. Few-Body Systems. 42:73-81., Number 1-4: Springer-Verlag Abstract2008_11.pdfWebsite

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Sahoo, S, Lin YC, Ho YK.  2008.  Quantum-confined hydrogenic impurity in a spherical quantum dot under the influence of parallel electric and magnetic fields. Physica E: Low-dimensional Systems and Nanostructures. 40:3107–3114., Number 10: Elsevier Abstract2008_12.pdf

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Kar, S, Ho YK.  2008.  Resonance states of three self-gravitating bosons and fermions below the N = 3 threshold of the two-body subsystem. Journal of Physics B: Atomic, Molecular and Optical Physics. 41:065302., Number 6 Abstract2008_14.pdfWebsite

The resonance states of systems consisting of three identical bosons and three fermions interacting with an attractive 1/ r potential are investigated using highly correlated exponential basis functions. The method of complex-coordinate rotation is used to extract energies and widths for the resonances lying below the N = 3 excited state threshold of the respective two-body subsystem. We have obtained a total of 24 S-wave resonances for the three-boson system and a total of 19 S-wave resonances in total spin-3/2 (the 4 S state) and a total of 15 S-wave resonances in total spin-1/2 (the 2 S state) below the N = 3 threshold. For the resonances associated with the N = 3 threshold, we have obtained two, three and four series of Rydberg states for the three-boson system, three-fermion system for 2 S states and three-fermion system for 4 S states, respectively. The resonance energies and widths of these states for the three-body self-gravitating bosons and fermions are reported.

Yan, Z-C, Ho YK.  2008.  Resonances with unnatural parities in the positron-hydrogen system. Physical Review A. 77:030701., Number 3: APS Abstract2008_15.pdf

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Kar, S, Ho YK.  2008.  Unnatural parity states of helium with screened Coulomb potentials. International Journal of Quantum Chemistry. 108:1491–1504., Number 9: Wiley Subscription Services, Inc., A Wiley Company Abstract2008_17.pdfWebsite

Effect of screened Coulomb (Yukawa) potentials on the doubly excited meta-stable bound states and the resonance states with unnatural parities of the helium atom have been investigated in the framework of stabilization method using CI-type basis functions. A total of 54 resonances (6 each of 1Do and 3Do states, 12 each of 1Fe and 3Fe states, 9 each of 1Go and 3Go states) below the He+(3P) thresholds have been estimated by calculating the density of resonance states using a stabilization method. The resonances belong to the different 3lnl′ (n ≥ 3) series. We have also calculated the doubly excited 1,3Fe and 1,3Go meta-stable bound states of He atom below the He+ (2P) thresholds. The resonance energies and widths along with the meta-stable bound states energies are reported for various screening parameters. In free atom case, some of the F-wave resonance states and most of the cases, F- and G-wave resonance widths are reported for the first time. © 2008 Wiley Periodicals, Inc. Int J Quantum Chem, 2008

2007
Kar, S, Ho YK.  2007.  Bound states and resonance states of the plasma-embedded $pp$μ${}$ molecular ion, Jun. Phys. Rev. A. 75:062509.: American Physical Society Abstract2007_1.pdfWebsite

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Kar, S, Ho YK.  2007.  Bound D-states of helium atom under Debye screening. International Journal of Quantum Chemistry. 107:353–358., Number 2: Wiley Online Library Abstract2007_2.pdf

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Kar, S, Ho YK.  2007.  Bound state energies of three self-gravitating Bose–Einstein condensates. Physics Letters A. 370:306–309., Number 3: Elsevier Abstract2007_3.pdf

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Kar, S, Ho YK.  2007.  Bound states and dipole polarizability of hydrogen molecular ion H+2 in weakly coupled hot plasmas. Physics Letters A. 368:476-479., Number 6 Abstract2007_4.pdfWebsite

The effects of hot-dense plasmas on the bound states and the dipole polarizability of the ground state of Coulomb three-body molecular ion H+2 have been investigated using highly correlated basis functions and by considering the Debye shielding approach of plasma modeling. The ground S state and the first excited P state energies along with the dipole polarizability for different shielding parameters are reported.

Chakraborty, S, Ho YK.  2007.  Complex-rotation treatment on high-lying doubly-excited resonances in $H^{-}$ interacting with screened Coulomb potentials. Chemical physics letters. 438:99–103., Number 1: Elsevier Abstract2007_5.pdf

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Kar, S, Ho YK.  2007.  Doubly excited 1, 3Pe meta-stable bound states and resonance states of helium in weakly coupled plasmas. Journal of Physics B: Atomic, Molecular and Optical Physics. 40:1403-1415., Number 7: IOP Publishing Abstract2007_6.pdf

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Kar, S, Ho YK.  2007.  The doubly-excited 2p2 1De resonance state of the helium atom in hot-dense plasmas. Physica Scripta. 75:13-18., Number 1: IOP Publishing Abstract2007_7.pdf

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Kar, S, Ho YK.  2007.  Effect of Debye plasmas on the dispersion coefficients \{C6\} for interactions among H and He atoms. Chemical Physics Letters. 449:246-248., Number 1–3 Abstract2007_8.pdfWebsite

The effect of Debye plasmas on the dispersion coefficient \{C6\} for interactions among H and He atoms has been investigated for the first time using highly correlated exponential basis functions. The \{C6\} coefficient for the interactions among H and He are reported for various Debye lengths.

Kar, S, Ho YK.  2007.  Ground states and resonance states of $Ps^{-}$ and He interacting with screened Coulomb (Yukawa) potentials. Nuclear Physics A. 790:804c–807c., Number 1: Elsevier Abstract2007_10.pdf

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Kar, S, Ho YK.  2007.  Resonance states of three self-gravitating bosons and fermions. Physical Review A. 76:032711., Number 3: APS Abstract2007_11.pdf

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Kar, S, Ho YK.  2007.  Transition wavelengths for helium atom in weakly coupled hot plasmas. Journal of Quantitative Spectroscopy and Radiative Transfer. 107:315–322., Number 2: Elsevier Abstract2007_12.pdf

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2006
Kar, S, Ho YK.  2006.  Bound states of helium atom in dense plasmas. International journal of quantum chemistry. 106:814–822., Number 4: Wiley Online Library Abstract2006_1.pdf

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