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71.
Swift heavy ion (SHI) irradiation has been used as a tool to enhance the electrochemical properties of ionic liquid-based nanocomposite polymer electrolytes dispersed with dedoped polyaniline (PAni) nanorods; 100 MeV Si9+ ions with four different fluences of 5?×?1010, 1?×?1011, 5?×?1011, and 1?×?1012 ions cm?2 have been used as SHI. XRD results depict that with increasing ion fluence, crystallinity decreases due to chain scission up to fluence of 5?×?1011 ions cm?2, and at higher fluence, crystallinity increases due to cross-linking of polymer chains. Ionic conductivity, electrochemical stability, and dielectric properties are enhanced with increasing ion fluence attaining maximum value at the fluence of 5?×?1011 ions cm?2 and subsequently decrease. Optimum ionic conductivity of 1.5?×?10?2 S cm?1 and electrochemical stability up to 6.3 V have been obtained at the fluence of 5?×?1011 ions cm?2. Ac conductivity studies show that ion conduction takes place through hopping of ions from one coordination site to the other. On SHI irradiation, amorphicity of the polymer matrix increases resulting in increased segmental motion which facilitates ion hopping leading to an increase in ionic conductivity. Thermogravimetric analysis (TGA) measurements show that SHI-irradiated nanocomposite polymer electrolytes are thermally stable up to 240–260 °C. 相似文献
72.
This paper deals with FRW-Cosmological model of the universe for conharmonically flat space time. Einstein field equations with variable cosmological term are solved by using a law of variation for Hubble’s parameter, which is related to average scale factor. A new class of exact solution of the field equation has been obtained in which cosmological-term decreases with cosmic time. A detailed study of physical and kinematical properties of the model is also carried out. 相似文献
73.
Out of a total statistics of 896139La+Ag(Br) interactions, 128 interactions having multiplicity of target fragments (Z⩾1)⩾8 and projectile fragments (Z⩾2)⩾4 have been selected. They correspond to quasi-peripheral interactions. Azimuthal angle correlation between sources of
target fragments (TFs) and projectile fragments (PFs) shows the existence of bounce-off effect. Using data of La+Ag(Br) and84Kr+Ag(Br) reactions it is shown that individual helium [Z=2, PFs] and heavier fragment [Z⩾3, PFs] show different emission characteristics. Further, a two prong correlation functionT(Φ
ij
) plotted for heavier fragments and helium fragments separately, indicates the possibility of existence of different physical
conditions. This observation is supported by the different momentum widths of helium fragments and heavier fragments. From
the momentum width data of Kr+Ag(Br) reactions normalized density comes out to be ≈4.7. Using quasi-elastic kinematics for
the bounce-off nuclei, the excitation energy has been computed from the experimental data of flow angles. The strength of
bounce-off seems to decrease with the increase of excitation energy or temperature. 相似文献
74.
Summary We have applied the Tiwary approach to calculate the opticaloscillator strengths, of both the length and velocity forms, for
the inner-shell excitation1s
2
2s
2
2p
6
3s
2
S
e
→1s
2
2s
2
2p
5
3s
2
2
P
0
transition in Ca X, Sc XI, Ti XII, Cu XIX, Zn XX, Br XXV and Kr XXVI ions of the sodium isoelectronic sequence employing
Hartree-Fock (HF) and configuration interaction (CI) wave functions of both the initial and final states involved in the transition.
Our present calculated results demonstrate that the Tiwary approach is capable of yielding encouraging results.
A part of this work was done while the author was Research Director and Professor, CNRS Laboratory, University of Paris-Sud
and Observatoire de Paris, Meudon, Paris, France. 相似文献
75.
Adamovich MI Aggarwal MM Alexandrov YA Andreeva NP Anson ZV Arora R Avetyan FA Badyal SK Basova E Bazarov IK Bhalla KB Bhasin A Bhatia VS Bogdanov VG Bubnov VI Burnett TH Cai X Carshiev DA Chasnicov IY Chernova LP Chernyavski MM Eligbaeva GZ Eremenko LE Gaitinov AS Ganssauge ER Garpman S Gerassimov SG Grote JG Gulamov KG Gupta SK Gupta VK Heckman HH Huang H Jacobsson B Judek B Kachroo S Kalyachkina GS Kanygina EK Karabova M Kharlamov SP Kitroo S Koss T Krasnov SA Kumar V Lal P Larionova VG 《Physical review D: Particles and fields》1993,47(9):3726-3732
76.
J. N. Orce M. Kumar Raju N. A. Khumalo T. S. Dinoko P. Jones R. A. Bark E. A. Lawrie S. N. T. Majola L. M. Robledo B. Rubio M. Wiedeking J. Easton E. A. Khaleel B. V. Kheswa N. Kheswa M. S. Herbert J. J. Lawrie P. L. Masiteng M. R. Nchodu J. Ndayishimye D. Negi S. P. Noncolela S. S. Ntshangase P. Papka D. G. Roux O. Shirinda P. S. Sithole S. W. Yates 《The European Physical Journal A - Hadrons and Nuclei》2016,52(6):166
77.
78.
79.
Wang XL Yuan CZ Shen CP Wang P Adachi I Aihara H Arinstein K Aushev T Bakich AM Barberio E Bedny I Bhardwaj V Bitenc U Blyth S Bondar A Bozek A Bracko M Brodzicka J Browder TE Chang P Chen A Chen KF Cheon BG Chiang CC Chistov R Cho IS Choi SK Choi Y Dalseno J Danilov M Dash M Drutskoy A Eidelman S Epifanov D Gabyshev N Go A Gokhroo G Ha H Hayasaka K Hayashii H Hazumi M Heffernan D Hoshi Y Hou WS Hyun HJ Iijima T Inami K Ishikawa A Ishino H Itoh R Iwasaki Y Kah DH Kang JH Kawai H Kawasaki T 《Physical review letters》2007,99(14):142002
The cross section for e+ e- --> pi+ pi- psi(2S) between threshold and sqrt[s]=5.5 GeV is measured using 673 fb(-1) of data on and off the Upsilon(4S) resonance collected with the Belle detector at KEKB. Two resonant structures are observed in the pi+ pi- psi(2S) invariant-mass distribution, one at 4361 +/- 9 +/- 9 MeV/c2 with a width of 74 +/- 15 +/- 10 MeV/c2, and another at 4664 +/- 11 +/- 5 MeV/c2 with a width of 48 +/- 15 +/- 3 MeV/c2, if the mass spectrum is parametrized with the coherent sum of two Breit-Wigner functions. These values do not match those of any of the known charmonium states. 相似文献
80.
We consider the arrival time distribution defined through the quantum probability current for a Gaussian wave packet representing
free particles in quantum mechanics in order to explore the issue of the classical limit of arrival time. We formulate the
classical analogue of the arrival time distribution for an ensemble of free particles represented by a phase space distribution
function evolving under the classical Liouville's equation. The classical probability current so constructed matches with
the quantum probability current in the limit of minimum uncertainty. Further, it is possible to show in general that smooth
transitions from the quantum mechanical probability current and the mean arrival time to their respective classical values
are obtained in the limit of large mass of the particles. 相似文献