references - Shodhganga

advertisement
REFERENCES
1.
Allen J.W., Oh S.J., Maple M.B, and Torikaehvilli M.S. (1983), ‘Large
Fermi-level resonance in the electron-addition spectrum ofCeRu2 and
Celr2\ Phys. Rev., Vol.B28, pp.5347-5349.
2.
Alonso J.A. and Girifalco L.A. (1978), ‘Nonlocal approximation to the
exchange potential and kinetic energy of an inhomogeneous electron
gas’, Phys. Rev., Vol.B17, pp.3735-3743.
3.
Andersen O.K., Jepsen O. and Sob M. (1986), ‘Linearized band
structure methods’ in ‘Electronic Band structure and Its Applications
Lecture Notes in Physics’, Vol.283, edited by M.Yousouff, Springerverlag, Berlin, pp.1-58.
4.
Andersen O.K. (1975) ‘Linear methods in band theory’, Phys. Rev.,
Vol.B12, pp.3060-3083.
5.
Andersen O.K. and Jepsen O. (1984), ‘Explicit, First principles tight
binding theory’, Phys. Rev. Letts., Vol.53, pp.2571-2574.
6.
Anderson O.L. (1966), The use of ultrasonic measurements under
modest pressure to estimate compression at high pressure’, J. Phys.
Chem. Solids, Vol.27, pp.547-565.
7.
Anthony R. West (1984), ‘Solid State Chemistry and its Applications’
John Wiley & Sons, Singapore.
8.
Baer Y. and Schneider W.-D. (1987), ‘High energy spectroscopy of
lanthanide materials - an overview’ in ‘Handbook on the Physics and
Chemistry of Rare Earths’, Vol.10 - High energy spectroscopy, edited
by Karl A, Gschneidner, Jr. LeRoy Eyring and Stefan Hufner, North
Holland Physics Publishing, Elsevier Science Publishers B.V.,
Netherlands, pp.1-73.
9.
Benedict U. (1993), ‘Pressure - induced phase transitions in 5f and 4f
metals and compounds’, J. Alloys. Cmpds., Vol.193, pp.88-93.
10.
Benedict U. (1995), ‘Comparative aspects of the high pressure
behaviour of lanthanides and actinide compounds’, J. Alloys Cmpds.,
Vol.223, pp.216-225.
104
11.
Benedict U., Dabos S.S., Dancausse J.P., Gensini M., Gering E.,
Heathman S., Luo IL, Olsen J.S., Gerward L. and Haire R.G. (1992),
‘Actinide compounds under pressure’ J. Alloys Cmpds., Vol.181,
pp.1-12.
12.
Birch F. (1978), ‘Finite strain isotherm and velocities for single
crystal and polycrysalline NaCl at high pressure and 300K., J.
Geophys. Res., Vol.83, pp. 1257-1268.
13.
Bridgman P.W. (1964), ‘Collected Experimental Papers’, Cambridge,
M.A., Harvard University.
14.
Brooks M.S.S. (1984), ‘Electronic structure of NaCl-type compounds
of the light actinides : III. The actinide nitride series’, J. Phys. F :
Met. Phys., Vol.14, pp.857-871.
15.
Burdick G.A. (1963), ‘Energy band structure of copper’, Phys. Rev.,
Vol.129, pp. 138-150.
16.
Brooks M.S.S., Johansson B. and Skriver H.L. (1984), ‘Electronic
structure and bulk ground state properties of the actinides’ in
‘Handbook on the Physics and Chemistry of the Actinides’, Vol.l,
edited by A.J.Freeman and G.H. Lander, Elsevier Science Publishers
B.V., pp. 153-269.
17.
Brust D. (1968), The pseudopotential method and the single-particle
electronic excitation spectra of crystals’ in ‘Methods in Computational
Physics’, Energy Bands of Solids, Vol.8, edited by Alder B, Fembach
S and Rotenberg M., Academic Press, New York, pp.33-61.
18.
Buras B. and Gerward L. (1989), ‘Application of X-ray energy
dispersive diffraction for characterization of materials under high
pressure’ in ‘Prog, in Crystal Growth and Charact.’, Vol.18 edited by
P. Krishna, Pergamon Press, Oxford, Great Britain, pp.93-138.
19.
Cardona M. and Ley L. (1978), ‘Photoemission in Solids’, Vol.l,
Springer Verlag, Berlin.
20.
Chatteijee A., Singh A.K. and Jayaraman A. (1972), ‘Pressure-induced
electronic collapse and structural changes in rare-earth
monochalcogenides’, Phys. Rev., V0I.B6, pp.2285-2291.
185
21.
Chattopadhyay T., Burlet P., Rossat-Mignod J., Bartholin II.,
VettierC. and Vogt O. (1994), ‘High pressure neutron and
magnetization investigation of the magnetic ordering in CeSb’, Phys.
Rev., Vol.B49, pp. 15096-15104.
22.
Ching W.Y. (1990), ‘Theoretical studies of the electronic properties’,
J. Am. Ceram. Soc., Vol.73, pp.3135-3160.
23.
Christensen N.E. and Christensen O.B. (1986), ‘Electronic structure
of ZnTe and CdTe under pressure’, Phys. Rev., Vol.B33, pp.4739-4746.
24.
Croft M., Franciosi A., Weaver J.H. and Jayaraman A. (1981),
‘Resonant photoemission in CeS and CeP,’ Phys. Rev., Vol.B24,
pp.544-548.
25.
Dabos S.S., Benedict U., Heathmenn S. Spirlet J.C. and Pages M.
(1990), ‘Phase transformation of AnX compounds under high pressure
(An=Np, Pu; X=Sb, Te)’, J. Less Com. Met., Vol.160, pp.35-52.
26.
Dabos S., Dufour C., Benedict U., Spirlet J.C. and Pages M. (1986),
‘High-pressure X-ray diffraction on neptunium compounds, recent
results for NpAs’, Physica,, Vol.B144, pp.79-83.
27.
Dabos S.S., Benedict U. and Spirlet J.C. and Pages M. (1989)
‘Compression studies on PuAs upto 45 GPa’, J. Less Com. Met.,
Vol.153, pp. 133-141.
28.
Damien D.D. and Novion C.H. (1981), ‘Crystal chemistry and
electronic structure of actinide compounds’, J. Nucl. Mater., Vol.100,
pp.167-177.
29.
Das M.P. (1989), ‘Density functional theory’, in ‘Condensed Matter
Physics’, edited by J. Mahanty and M.P.Das, World Scientific
Publishing Co. Pte. Ltd., Singapore, pp. 111-145.
30.
Davis H.L. (1974) ‘Band structure of actinide compounds possessing
NaCl-type symmetry, in The Actinides : Electronic Structure and
Related Properties’, Vol.II edited by A.J. Freeman and J.B. Darby,
Academic Press, New York, pp.1-49.
31.
De S.K. and Chatteijee S. (1989), ‘Electronic and optical properties of
CeS under pressure’, Phys. Rev., Vol.B40, pp. 12304-12311.
32.
Dederichs P.H. and Zeller R. (1983), ‘Self-consistency iterations in
electronic-structure calculations’, Phys. Rev., Vol.B28, pp.5462-5472.
186
33.
Donni A., Oyamada A., Ohe Y., Suzuki T., Sugiyama K., Date M.,
Fischer P., Furrer A. and Hulliger F. (1993), ‘Magnetic-field - induced
phase transition in the cerium monochalcogenide CeSe’, J. Alloys
Cmpds., Vol. 193, pp.309-311.
34.
Donni A., Furrer A., Fischer P., Hulliger F. and Hayden S.M. (1992),
‘Anisotropic exchange and spin dynamics in the type-II
antiferromagnetic cerium monochalcogenide CeSe’, J. Magn. Magn.
Mater., Vol.104-107, pp.1204-1206.
35.
Dutta E.L. and Syamal A. (1993), ‘Elements of Magnetochemistry’
2nd edition, Affiliated East-West Press Pvt. Ltd., New Delhi.
36.
Feng Shiping and Ma Benkin (1989), Theoretical explanation of the
changes of superconductivity critical temperatures of Ba-Y-Cu-0 with
pressure’, Chin. Phys., (USA) Vol.9, pp.973-975.
37.
Fournier J.M. and Manes L. (1985), ‘Actinide Solids 5f dependence of
physical properties’ in ‘Structure and Bonding’, Vol.59-60, Springer
Berlin Heidelberg, pp.1-56.
38.
Freeman A.J., Min B.I. and Norman M.R. (1987), ‘Local density
supercell theory of photoemission and inverse photoemission spectra’,
in ‘Hand Book on the Physics and Chemistry of Rare Earths High
Energy Spectroscopy’, Vol. 10, edited by Karl A. Gschneidner, Jr.
LeRoy Eyring. and Stefan Hiifner, North Holland Physics Publishing
Elsevier Science Publishers B.V., Netherlands, pp.165-229.
39.
Fu C.L. and Ho K.M. (1983), ‘First principles calculation of the
equilibrium ground-state properties of transition metals: applications
to Nb and Mo’, Phys. Rev., Vol.B28, pp.5480-5486.
40.
Fujimori A. (1982), ‘4f - and core-level photoemission satellites in
cerium compounds’, Phys. Rev., Vol.B27, pp.3992-4001.
41.
Gerward, L., Olsen J.S. Benedict U. Dabos S.S., Luo H., Itie J.P. and
Vogt O. (1988), ‘Bulk moduli and high pressure phases of ThX
compounds. I. The thorium monopnictides’, High Temp. - High
Pressures, Vol.20, pp.545-552.
42.
Glotzel D., Segall B. and Anderson O.K. (1980), ‘Self-consistent
electronic structure of Si, Ge and diamond by the LMTO-ASA
method’, Solid State Commun., Vol.36, pp.403-406.
187
43.
Gould G.W. (1995), ‘New Methods of Food Preservation’, Blackie
Academic Professional.
44.
Gudat W., Campagna M., Roser R., Weaver J.H, Eberhardt W.,
Hulliger F. and Kaldis E. (1982), ‘Surface binding energy shifts,
mixed valence and localization of 4f electrons : Ce vs Sm’, J. Appl.
Phys., Vol.52, pp.2123-2128.
45.
Gunnarsson 0. and Lundqvist B.I. (1976), ‘Exchange and correlation
in atoms, molecules and solids by the spin-density, functional
formalism’, Phys. Rev., Vol.B13, pp.4274-4298.
46.
Gupta S.C. (1995), ‘Some phase transition studies under shock waves’
in ‘Advances in High Pressure Science and Technology’, edited by Anil
K. Singh, Tata Me. Graw Hill Publishing Company Ltd., New Delhi,
pp.3-21.
47.
Hergert W., Wenzien B. and Rennert P. (1991), ‘Computation of
electronic structure of clean and adatom-covered Ag (001) surfaces by
means of TB-LMTO and recursion method’, Physica., Vol.B172,
pp. 167-173.
48.
Herman F., Kortum Richard L., Kuglin Charles D., van Dyke John P.
and Skillmann S. (1968), ‘Electronic structure of tetrahedrally bonded
semiconductors : empirically adjusted OPW energy band calculations’
in ‘Methods in Computational Physics’, Energy Bands of Solids, Vol.8,
edited by Alder B, Fembach S and Rotenberg M., Academic Press,
New York, pp. 193-250.
49.
Herman F. and Skillmann S. (1963), ‘Atomic Structure Calculations’,
Prentice-Hall, Englewood Cliffs, New Jersey.
50.
Hill H.H. (1970), The early actinides : the periodic systems f electron
transition metal series’ in ‘Plutonium and Other Actinides’, edited by
W.M. Miner, Society of AIME, New York, pp.2-19.
51.
Hohenberg P. and Kohn W. (1964), ‘Inhomogeneous electron gas’,
Phys. Rev., Vol.B136, pp.864-871.
52.
Hulliger F. (1979), ‘Rare earth pnictides’in ‘Hand Book on Physics and
Chemistry of Rare Earths’, Vol.4, edited by Gschneidner K.A. and
Eyring L., North Holland Publishing Company, New York,
pp. 153-236.
188
53.
Hulliger F. and Hull Jr.G.H. (1970), ‘Superconductivity in rock salttype compounds’, Solid State Cominun., Vol.8, pp. 1379-1382.
54.
Ihm J. (1988), ‘Total energy calculations in solid state physics’, Rep.
Prog. Phys., Vol.51, pp. 105-142.
55.
Issacs N.S. and Holzapfel W.B. (1995), ‘High pressure Techniques in
Chemistry and Physics : A Practical Approach’, Oxford University
Press.
56.
Jayaraman A., Watter Lower and Longinotti L.D. (1976), ‘Pressure
induced valence change in cerium phosphide’, Phys. Rev. Letts.,
Vol.36, pp.366-369.
57.
Jepsen 0. and Andersen O.K. (1971), The electronic structure of
h.c.p. ytterbium’ Solid State Commun., Vol.9, pp.1763-1767.
58.
Johansson B., Skriver H.L. and Anderson O.K. (1981), ‘Electronic
structure of the actinide metals’, in ‘Physics of Solids Under High
Pressure’, edited by Schilling J.S. and Shelton R.N., North Holland
Publishing Company, New York, pp.245-262.
59.
Johnson D.D. (1988), ‘Modified Broyden’s method for accelerating
convergence in self-consistent calculations’, Phys. Rev., Vol.B38,
pp.12807-12813.
60.
Johnson K.H. (1984), ‘SCF-Xa-SW cluster molecular-orbital models of
catalysts, alloys, magnetic materials and superconductors’ in ‘Local
Density Apporoxmations in Quantum Chemistry and Solid State
Physics’ edited by Jens Pedel Dahl and John Avery, Plenum Press,
New York, pp.487-514.
61.
Kalkowski G., Kaindl G., Bertram S., Schmiester G., Rebizant J.,
Spirlet J.C. and Vogt O. (1987), ‘5f localization in light actinide
compounds studied by L3-edge X-ray absorption’, Solid State
Commun., Vol.64, pp. 193-196.
62.
Kalpana G., Palanivel B. and Rajagopalan M. (1995). ‘Electronic and
structural properties of alkaline-earth oxides under high pressure’,
Phys. Rev., Vol.B52, pp.4-7.
63.
Kasuya T., Haga Y., Suzuki T., Kanata Y. and Sakai O. (1992), ‘p-f
mixing and carrier number in Ce-monopnictides’, J. Phys. Soc. Jpn.,
Vol.61, pp.3447-3451.
189
64.
Kasuya T. (1994), ‘Anomalous knight shift in CeP and CeAs’, J. Phys.
Soc. Jpn., Vol.63, pp.4318-4321.
65.
Kasuya T., Haga Y., Kwon Y.S. and Suzuki T. (1993), ‘Physics in low
carrier strong correlation systems’, Physica, Vol.B 186-188, pp.9-15.
66.
Kioussis N., Swearinger D., Cooper B.R. and Wills J.M. (1991),
‘Trends of hybridization - induced magnetism in cerium
monochalcogenides’, J. Appl. Phys., Vol.69, pp.5475-5477.
67.
Kohn W. and Sham L.J. (1965), ‘Self-consistent equations including
exchange and correlation effects’, Phys. Rev., Vol.A140, pp. 1133-1138.
68.
Korringa J. (1947), ‘On the calculation of the energy of a Bloch wave
in a metal’, Physica, Vol.13, pp.392-400.
69.
Kulator E., Vinakurova L. and Motizuki K. (1993), ‘Pressure
dependences of electronic and optical properties of MnAs, MnSb and
Mn2Sb intermetallic compounds’, in ‘Recent Advances in Magnetism
of Transition Metal Compounds’, edited by Kotani A. and Suzuki N.,
World Scientific Publishing Co. Pte. Ltd., Singapore, pp.56-66.
70.
Kuroda T., Sugiyama K., Haga Y., Suzuki T., Yamagishi Y. and Date
M. (1993), ‘Multi step magnetization induced by the Landau level
crossing in CeF, Physica, Vol.B 186-188, pp.396-399.
71.
Lambrecht W.R.L. and Andersen O.K. (1986), ‘Minimal basis sets in
the linear muffin-tin orbital method : application to the diamondstructure crystals C, Si and Ge’, Phys. Rev., Vol.B34, pp.2439-2449.
72.
Langreth D.C. and Mehl M.J. (1983), ‘Beyond the local-density
approximation in calculations of ground-state electronic properties’,
Phys. Rev., Vol.B28, pp. 1809-1834.
73.
Lasser R., Fuggle J.C., Beyss M., Campagna M., Steglich F. and
Hulliger F. (1980), %-ray photoemission from Ce core levels of CePd3,
CeSe, CeAl2 and CeCu2Si2’, Physica, Vol.B 102, pp.360-366.
74.
Leger J.M. (1993), ‘Chalcogenides and pnictides of cerium and
uranium under high pressure’, Physica, Vol.B 190, pp.84-91.
75.
Ley L. and Cardona M. (1979), ‘Photoemission in Solids’, Vol.2,
Springer Verlag, Berlin.
190
76.
Lim S.P., David L., Price and Berhard R. and Cooper B.R. (1991),
‘Giant magnetooptic rotations : the role of orbital polarization and
explicit correlation effects’, IEEE Transactions on Magnetics, Vol.27,
pp.3648-3653.
77.
Lim S.P. and Cooper B.R. (1991), ‘The role of orbital polarization and
correlation effects in the magnetic - optic behavior of CeSb and CeTe’,
J. Appl. Phys., Vol.70, pp.5809-5811.
78.
Lin-gun Liu (1981), ‘Structural considerations in high-pressure phase
transformations of simple crystals’, High Temp. - High Pressures,
Vol.13, pp.387-405.
79.
Lundqvist B.I. (1984), ‘Some applications of the density-functional
formalism to chemisorption’, in ‘Local Density Approximations in
Quantum Chemistry and Solid State Physics’ edited by Jens Peder
Dahl and John Avery, Plenum Press, New York, pp.515-530.
80.
Lynch D.W. and Weaver J.H. (1987), ‘Photoemission of Ce and its
Compounds’, In : ‘Hand Book of the Physics and Chemistry of Rare
Earths High Energy Spectroscopy’, Vol.10, edited by Karl A.
Gschneidner, Jr, LeRoy Eyring and Stefan Hufner, North Holland
Physics Publishing, Elsevier Science Publishers B.V., Netherlands,
pp.231-300.
81.
Mackintosh A.R. and Andersen O.K. (1980), ‘The electronic structure
of transition metals’, in ‘Electrons at the Fermi-surface’, edited by
M. Springford, Cambridge University Press, Cambridge, pp. 149-224.
82.
Mahajan S., Mani H.K., Guruvayurappan K. and Dhenka P.S. (1994),
‘Supercomputers for Scientific Visualization’, Tata Me Graw Hill
Publishing Company Ltd., New Delhi.
83.
Mao H.K. and Hemeley R.J. (1994), ‘Ultra high pressure transitions
in solid hydrogen’, Rev. Mod. Phys., Vol.66, pp.671-692.
84.
Mattenberger K., Vogt O., Rebizant J., Spirlet J.C., Bourdarot F.,
Burlet P., Rossat-Mignod J. Bouillet M.N., Blaise A. and Sanchez J.P.
(1992), ‘Magnetic properties of single crystalline NpAs-NpSe mixed
compounds’, J. Magn. Mag. Mater., Vol.104-107, pp.43-44.
85.
Mattheiss L.F., Wood J.H. and Switendick A.C. (1968), ‘A procedure
for calculating electronic energy bands using symmetrized augmented
plane waves’ in ‘Methods in Computational Physics’, Vol.8, Energy
Bands of Solids, Academic Press, New York, pp.63-147.
191
86.
Mehl M.J. and Klein B.M. (1991), ‘All-electron first principles
supercell total-energy calculation of the vacancy formation energy in
aluminum’, Physica., Vol.B172, pp.211-215.
87.
Methfessel M. and Seheffler M. (1991), ‘Full potential LMTO
calculations for atomic relaxations at semiconductor-semiconductor
interfaces’, Physica. Vol.B72, pp. 175-183.
88.
Mori N., Okayama Y., Takahashi H., Haga Y. and Suzuki T. (1993),
‘Why the magnetic and electrical properties of Ce monopnictides are
so sensitive to pressure", Physica, V0I.BI86-I88, pp.444-450.
89.
Morosin B, Venturini E.L., Graham R.A. and Ginley D.S. (1989),
‘High-pressure shock modification and synthesis of superconductivity
ceramic oxides’ Synth. Met. (Switzerland), Vol.33, pp. 185-224.
90.
Moruzzi V.L., Janak J.F. and Williams A.R. (1978), ‘Calculated
Electronic Properties of Metals’, Pergamon Press Inc., New York.
91.
Nandini G. (1995), ‘Some crystal to glass transitions at high
pressures’, in ‘Advances in High Pressure Science and Technology’,
edited by Anil K. Singh, Tata Me. Graw Hill Publishing Company
Ltd., New Delhi, pp.93-101.
92.
Norman M.R., Koelling D.D., Freeman A.J., Jansen J.J.F., Min B.I.,
Oguchi T. and Ye L. (1984), ‘Origin of the two-peak photoemission
and inverse-photoemission spectra in Ce and Ce compounds’, Phys.
Rev. Lett., Vol.53, pp. 1673-1676.
93.
Norman M.R. and Perdew J.P. (1983), ‘Simplified self-interaction
correction applied to the energy bands of neon and sodium chloride’,
Phys. Rev., Vol.B28, pp.2135-2139.
94.
Novaro 0., (1973), ‘Comment on the group theoretical justification of
the Aufbau scheme’, International Journal of Quantum Chemistry,
Symposium No.7, John Wiley & Sons Inc., pp.53-56.
95.
Okayama Y., Takahashi H., Mori N., Kwon Y.S., Haga Y. and Suzuki
T. (1993), ‘Pressure induced electrical and magnetic properties of Cemonopnictides, CeX (X=P,As, Sb and Bi)’, J. Magn. Mag. Mater.,
Vol.108, pp. 113-114.
96.
Olsen J.S., Gerward L., Benedict V. and Luo H. (1989), ‘Crystal
structure and the equation of state of thorium monophosphide for
pressures upto 50 GPa’, J. Appl. Cryst., Vol.22, pp.61-63.
192
97.
Ott H.R., Kjems J.K. and Hulliger F. (1979), ‘Magnetic ordering in
cerium mono-chalcogenides : A test case for e expansions with n=4’,
Phys. Rev. Letts., Vol.42, pp. 1378-1381.
98.
Oyamada Akide, Atsushi Ishobe, Hideaki Kitazawa, Akira Ochiai,
Kazuo Soda, Masaki Taniguchi, Tamiko Mori, Shigemasa Suga,
Hisatomo Harima, Takashi Suzuki and Tadao Kasuya (1993), ‘Photo
emission study of Ce2Sb’, J. Phys. Soc. Jpn., Vol.62, pp.2879-2888.
99.
Paxton A.T., Methfessel M. and Polatoglou H.M. (1990), ‘Structural
energy-volume relations in first-row transition metals’, Phys. Rev.,
Vol.B12, pp.8127-8138.
100.
Franciosi A., Weaver J.H., Martensson N. and Crot M. (1981),
‘Evidence of 4f photoemission satellites in cerium compounds’, Phys.
Rev. Vol.B24, pp.3651-3654.
101.
Pistorius W.F.T. and Carl (1976), ‘Phase relations and structures of
solids at high pressures’, Progress in Solid State Chemistry, Vol.ll,
pp.1-151.
102.
Rajagopalan M., Arthi K., Auluck S. and Kalpana G. (1996), ‘Pressure
induced magnetic phase transition in Fe3Pt’ ‘J. Alloys Cmpds.,
Vol.240, pp. 124-127.
103.
Rajput S.S., Prasad R., Singru R.M., Kaprzyk S. and Bansil A (1996),
‘Electronic structure of disordered No-Mo alloys studied using the
charge-self-consistent Korringa-Kohn-Rostoker coherent potential
approximation’, J. Phys. : Condens. Matter, Vol.8, pp.2929-2944.
104.
Rao K.J. (1995), ‘Perspectives in Solid State Chemistry’, Narosa
Publishing House, Netherlands.
105.
Rao C.N.R. and Rao K.J. (1978), ‘Phase Transitions in Solids : an
Approach to the Study of the Chemistry and Physics of Solids’,
McGraw Hill Inc., New York.
106.
Razee S.S.A., Prasad R. and Singru R.M. (1997), The electronic
structure, and magnetic and structural properties of Fe-Cu and Fe-Ag
alloys’, J. Phys. : Condens. Matter, Vol.9, pp.4455-4466.
107.
Reihl B., Martenson N., Eastmann D.E., Arko A.J. and Vogt O.
(1982), ‘Resonant photoemission as a tool to study f and d electrons
in actinide compounds’, Phys. Rev., Vol.B26, pp.1842-1851.
193
108. Sakai O., Takahashi M., Takashige M. and Kasuya T. (1984),
‘Effective 4f energy level in virtual excitation and in photo emission
processes in Ce-pnictides’, Solid State Commun., Vol.52, pp.997-1001.
109.
Sanchez J.P., Robizant J., Spirlet J.C., VogtO. (1987). ‘Electronic and
magnetic properties of NpSb and NpTe studied by 237Np, 121Sb and
125Te Mossbauer spectroscopies’, 17e’me Joumees des actinides,
Lausanne, pp.26-28.
110.
Schilling James S. (1981), ‘Some recent results in magnetism under
high pressure’, in ‘Physics of Solids under High Pressure’, edited by
Schilling J.S. and Shelton R.N., North Holland Publishing Company,
New York, pp.345-356.
111. Schilling J.S. (1986), ‘Electrical and magnetic properties of solids at
high pressures : some recent results’, Physica., Vol.B139-140, pp.369377.
112. Schlosser H. and Ferrante J. (1991), The analysis of high pressure
experimental data’, J. Phys. Chem. Solids, Vol.52, pp.635-637.
113. Schmitt W., Hopster H. and Giintehrodt G. (1985), ‘Influence of
adsorbates on surface magnetism studied by spin resolved
photoemission spectroscopy. Phys. Rev., Vol.B31, pp.4035-4038.
114. Schneider J.R., Bauer G.E.W., Hansen N.K. and Kretschmer H.
(1984). ‘y-ray y bragg and compton scattering experiments used as
tests of the validity of the local density approximation’ in ‘Local
Density Approximations in Quantum Chemistry and Solid State
Physics’ edited by Jens Peder Dahl and John Avery, Plenum Press,
New York, pp.679-712.
115. Segall B. and Ham F.S. (1968). The green’s function method of
Korringa, Kohn and Rostoker for the calculation of the electronic
band structure of solids’ in ‘Methods in Computational Physics’,
Energy Bands of Solids, Vol.8, edited by Alder B, Fernbach S and
Rotenberg M., Academic Press, New York, pp.251-294.
116. Skelton, Quadri S.B., Elem W.T. and Webb A.W. (1985), ‘A review of
high pressure research with synchrotron radiation and recent kinetics
studies’, in ‘Solid State Physics under Pressure Recent Advances with
Anvil Devices’ edited by Minomura S., K.T.K. Scientific Publishers,
Tokyo, pp.329-334.
194
117.
Skriver H.L. (1984), The LMTO Method : Muffin-tin Orbitals and
Electronic Structure’ Springer-Verlag, Heidelberg.
118.
Slater J.C. (1975), ‘Solid State and Molecular Theory : A Scientific
Biography’, John Wiley & Sons, Inc., New York.
119. Takano K.J., Shino K., Izawa A., Miyahara M. and Wakatsuki M.
(1993), ‘Detection of a pressure induced phase transition in a diamond
anvil cell’, Jpn. J. Appl. Phys., Vol.32, pp.1268-1274.
120. Tosi M.P. (1964), ‘Cohesion of ionic solids in the Born model’, ‘Solid
State Physics’, edited by F. Seitz and D. Turnbull, Vol.16, Academic
Press, New York, pp. 1-120.
121. Trinadh Ch. U.M. and Natarajan S. (1993),
superconductors’, Ind. J. Phys., Vol.A67, pp.377-420.
‘Magnetic
122. Venkataraman G. (1991), ‘The Many Phases of Matter’, Universities
Press (India) Limited.
123. Vinet P., Rose J.H., Ferrante J. and Smith J.R. (1989), ‘Universal
features of the equation of state of solids’, J. Phys.: Condens. Matter,
Vol.l, pp. 1941-1963.
124. Vohra Y.K., Weir S.T. and Ruoff A.L. (1985), ‘High-pressure phase
transitions and equation of state of the III-IV compound InAs upto 27
GPa’, Phys. Rev., Vol.B31, pp.7344-7348.
125.
von Barth U. and Hedin L. (1972), ‘A local exchange-correlation
potential for the spin polarized case : I’, J. Phys., Vol.C5,
pp. 1629-1642.
126. Weaver J.H. (1983), ‘4f localization in cerium compound’, J. Less
Comm. Met, Vol.94, p.17-22.
127. Wendin G. (1981), ‘Break-down of One Electron Pictures in
Photoelectron Spectra’, Springer Verlag Heidelberg.
128. Williams R.H., Srivastava G.P. and McGovern I.T. (1980), ‘Photo
electron spectroscopy of solids and their surfaces’, Rep. Prog. Phys.,
Vol.43, pp. 1357-1414.
195
129.
Wimmer E., Freeman A.J. and Weinert M. (1984), ‘Local density
approach to surfaces and adsorbed layers’ in ‘Local Density
Approximations in Quantum Chemistry and Solid State Physics’,
edited by Jens Peder Dahl and John Avery, Plenum Press, New York,
pp.593-603.
130.
Wittig J. (1981), ‘Pressure-induced valence instability in
praseodymium metal and dilute (La, Pr) and (Y, Pr) alloys : a
counterpart of the cerium case’ in ‘Physics of Solids Under High
Pressure’, edited by Schilling J.S. and Shellton E.N., North-Holland
Publishing Company, New York, pp.283-293.
131.
Zumbach G., Modine N.A. and Kaxiras E. (1996), ‘Adaptive
coordinate, real space electronic structure calculations on parallel
computers’, Solid State Commun., Vol.99, pp.57-61.
132.
Zunger A., Perdew J.P. and Oliver G.L. (1980), ‘A self-interaction
corrected approach to many-electron systems : beyond the local spin
density approximation’, Solid State Commun., Vol.34, pp.933-936.
Download