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Featured researches published by Jiten Das.


Nuclear Physics | 1996

Study of transfer channel coupling and entrance channel effects for the near and sub-barrier fusion of 46Ti+64Ni, 50Ti+60Ni and 19F+93Nb systems

N. V. S. V. Prasad; A. M. Vinodkumar; Ak Sinha; K. M. Varier; D. L. Sastry; N Madhavan; P Sugathan; Do Kataria; Jiten Das

Abstract The fusion excitation functions for the 46 Ti+ 64 Ni , 50 Ti+ 60 Ni and 19 F+ 93 Nb systems have been measured from ∼ 10% below to 15% above the nominal Coulomb barrier, utilizing the recoil mass separator, HIRA at the Nuclear Science Centre, New Delhi. Mean spins have been deduced from the fusion cross sections by two different methods, one using the statistical model and the second by a fit to the fusion cross sections. Good agreement is found between them. It is seen that the simplified coupled-channel calculations, with couplings to the lowest surface inelastic excitations alone, do not explain both the observed fusion cross sections and mean spins in the low energy domain for all the three systems. A systematic comparison is made between the systems 46 Ti+ 64 Ni and 50 Ti+ 60 Ni which have quite different ground-state transfer Q -values ( Q gg ) for the transfer channels. The 46 Ti+ 64 Ni system shows a significant enhancement of the sub-barrier fusion cross section and mean spin as compared with the 50 Ti+ 60 Ni system, indicating the importance of the transfer channel coupling. Fusion cross section and mean spin have been studied for the near and sub-barrier fusion of the highly mass asymmetric system 19 F+ 93 Nb and compared with those for the 48 Ti+ 64 Ni system leading to the same compound nucleus via the nearly symmetric entrance channel. Since the 19 F+ 93 Nb system has a large positive Q gg for one-proton pick-up, the fusion data have been complemented by one-nucleon transfer measurements at energies around the Coulomb barrier. A simultaneous analysis of the fusion excitation functions and mean spin data indicates no significant effects that may be related to the entrance channel mass asymmetry.


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2010

Microstructure and mechanical properties of tungsten heavy alloys

Jiten Das; G. Appa Rao; S.K. Pabi


International Journal of Refractory Metals & Hard Materials | 2008

Improvement of machinability of tungsten by copper infiltration technique

Jiten Das; A. Chakraborty; T.P. Bagchi; Bijoy Sarma


International Journal of Refractory Metals & Hard Materials | 2009

Hardness and tensile properties of tungsten based heavy alloys prepared by liquid phase sintering technique

Jiten Das; U. Ravi Kiran; A. Chakraborty; N. Eswara Prasad


Journal of Magnetism and Magnetic Materials | 2008

Novel powder metallurgy technique for development of Fe–P-based soft magnetic materials

Jiten Das; Kailash Chandra; P.S. Misra; Bijoy Sarma


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2008

Hardness and tensile properties of Fe–P based alloys made through powder forging technique

Jiten Das; K. Chandra; P.S. Misra; Bijoy Sarma


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2014

Thermo-mechanical processing, microstructure and tensile properties of a tungsten heavy alloy

Jiten Das; G. Appa Rao; S.K. Pabi; M. Sankaranarayana; T.K. Nandy


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2011

Deformation behaviour of a newer tungsten heavy alloy

Jiten Das; G. Appa Rao; S.K. Pabi; M. Sankaranarayana; Bijoy Sarma


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2008

Effect of iron and nickel impurities on creep and tensile behaviour of Ti-24Al-20Nb-0.5Mo alloy

Jiten Das; A.K. Gogia; D.V.V. Satyanarayana


International Journal of Refractory Metals & Hard Materials | 2014

Oxidation studies on W–Nb alloy

Jiten Das; G. Appa Rao; S.K. Pabi; M. Sankaranarayana; T.K. Nandy

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G. Appa Rao

Defence Metallurgical Research Laboratory

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M. Sankaranarayana

Defence Metallurgical Research Laboratory

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S.K. Pabi

Indian Institute of Technology Kharagpur

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Bijoy Sarma

Defence Metallurgical Research Laboratory

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T.K. Nandy

Defence Metallurgical Research Laboratory

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A. Chakraborty

Defence Metallurgical Research Laboratory

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A. K. Sinha

Central Electronics Engineering Research Institute

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J. Janardhana Reddy

Defence Metallurgical Research Laboratory

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