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Featured researches published by B.N. Jagatap.


Journal of Chemical Physics | 2014

Electronic state spectroscopy of diiodomethane (CH2I2): Experimental and computational studies in the 30 000–95 000 cm−1 region

Anuvab Mandal; Param Jeet Singh; Aparna Shastri; B.N. Jagatap

The electronic absorption spectrum of diiodomethane in the 30,000-95,000 cm(-1) region is investigated using synchrotron radiation; the spectrum in the 50,000-66,500 cm(-1) region is reported for the first time. The absorption bands in the 30,000-50,000 cm(-1) region are attributed to valence transitions, while the vacuum ultraviolet (VUV) spectrum (50,000-95,000 cm(-1)) is dominated by several Rydberg series converging to the first four ionization potentials of CH2I2 at 9.46, 9.76, 10.21, and 10.56 eV corresponding to the removal of an electron from the outermost 3b2, 2b1, 1a2, and 4a1 non-bonding orbitals, respectively. Rydberg series of ns, np, and nd type converging to each of the four ionization potentials are assigned based on a quantum defect analysis. Time dependent density functional theory calculations of excited states support the analysis and help in interpretation of the Rydberg and valence nature of observed transitions. Density functional theory calculations of the neutral and ionic ground state geometries and vibrational frequencies are used to assign the observed vibronic structure. Vibronic features accompanying the Rydberg series are mainly due to excitation of the C-I symmetric stretch (ν3) and CH2 wag (ν8) modes, with smaller contributions from the C-H symmetric stretch (ν1). UV absorption bands are assigned to low lying valence states 1(1)B2, 1(1)B1, 2(1)A1, 3(1)A1, 2(1)B1, and 2(1)B2 and the unusually high underlying intensity in parts of the VUV spectrum is attributed to valence states with high oscillator strength. This is the first report of a comprehensive Rydberg series and vibronic analysis of the VUV absorption spectrum of CH2I2 in the 50,000-85,000 cm(-1) region. The VUV absorption spectrum of CD2I2 which serves to verify and consolidate spectral assignments is also reported here for the first time.


Journal of Quantitative Spectroscopy & Radiative Transfer | 2012

The role of torsional modes in the electronic absorption spectrum of acetone

Aparna Shastri; Param Jeet Singh; B. N. Raja Sekhar; R. D'Souza; B.N. Jagatap


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2011

First commissioning results from high resolution vacuum ultraviolet beamline at Indus-1 synchrotron source

Param Jeet Singh; Aparna Shastri; R. Sampath Kumar; S. N. Jha; S.V.N.B. Rao; R. D’Souza; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2013

Rydberg states of chloroform studied by VUV photoabsorption spectroscopy

Param Jeet Singh; Aparna Shastri; R. D’Souza; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2013

Effect of isotopic substitution in the electronic absorption spectrum of acetone: VUV photoabsorption studies of acetone-d6

Param Jeet Singh; Aparna Shastri; B. N. Raja Sekhar; R. D'Souza; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2013

Resonances in the population of circular Rydberg states formed in beam-foil excitation

Adya P. Mishra; T. Nandi; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2012

VUV photoabsorption spectroscopy of sulphur dioxide in the 1400–1600 Å region: Vibronic analysis of the E˜−X˜ system

Param Jeet Singh; Aparna Shastri; R. D'Souza; S. V. N. Bhaskara Rao; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2011

Observation of transitions involving core-excited states in Ar III and Ar IV and high-lying singly excited states in Ar I-Ar IV

T. Nandi; Adya P. Mishra; B.N. Jagatap


Journal of Quantitative Spectroscopy & Radiative Transfer | 2013

Radiative resonant energy transfer process in projectile-like ion formed in beam-foil interaction

Adya P. Mishra; T. Nandi; B.N. Jagatap


Indian Journal of Physics | 2014

Beamline optics layout preparation and evaluation of an undulator based atomic molecular and optical science research beamline at Indus-2 synchrotron radiation source

Asim Kumar Das; B. N. Raja Sekhar; B.N. Jagatap

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Aparna Shastri

Bhabha Atomic Research Centre

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Param Jeet Singh

Bhabha Atomic Research Centre

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Adya P. Mishra

Bhabha Atomic Research Centre

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B. N. Raja Sekhar

Bhabha Atomic Research Centre

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R. D'Souza

Bhabha Atomic Research Centre

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R. D’Souza

Bhabha Atomic Research Centre

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A. Venugopalan

Bhabha Atomic Research Centre

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Anuvab Mandal

Homi Bhabha National Institute

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Asim Kumar Das

Bhabha Atomic Research Centre

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K.G. Manohar

Bhabha Atomic Research Centre

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