Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Dmitriev, V.
2000.
Some general electromagnetic properties of linear homogeneous bianisotropic media following from space and time-reversal symmetry of the second-rank and antisymmetric third-rank constitutive tensors.
The European Physical Journal Applied Physics,
Vol. 12,
Issue. 1,
p.
3.
Likhachev, V. P.
Mesa, J.
Arruda-Neto, J. D. T.
Carlson, B. V.
Deppman, A.
Hussein, M. S.
Nesterenko, V. O.
Garcia, F.
and
Rodriguez, O.
2002.
Quasifree electrofission of238U.
Physical Review C,
Vol. 65,
Issue. 4,
Likhachev, V.P.
Mesa, J.
Arruda-Neto, J.D.T.
Carlson, B.V.
Carvalho, W.R.
Chamon, L.C.
Deppman, A.
Dias, H.
and
Hussein, M.S.
2003.
Quasi-free 238U cross section in macroscopic–microscopic approach.
Nuclear Physics A,
Vol. 713,
Issue. 1-2,
p.
24.
Likhachev, V. P.
Arruda-Neto, J. D. T.
Carvalho, W. R.
Deppman, A.
Evseev, I. G.
Garcia, F.
Hussein, M. S.
Macedo, L. F. R.
Margaryan, A.
Mesa, J.
Nesterenko, V. O.
Rodriguez, O.
Pashchuk, S. A.
Schelin, H. R.
and
Vaudeluci, M. S.
2003.
Inclusive quasifree electrofission cross section for238U.
Physical Review C,
Vol. 68,
Issue. 1,
Arruda-Neto, J. D. T.
Mesa, J.
Garcia, F.
Rodriguez, O.
Geraldo, L. P.
Garcia, C.
Rodrigues, T. E.
Shtejer, K.
Semmler, R.
and
Guzmán, F.
2006.
Role of transitional levels inNp237(γ,f): Perspectives for studying highly deformed systems.
Physical Review C,
Vol. 74,
Issue. 3,
Erkol, Hakan
and
Demiralp, Ersan
2007.
The Woods–Saxon potential with point interactions.
Physics Letters A,
Vol. 365,
Issue. 1-2,
p.
55.
Garcia, F.
Rodriguez, O.
Guzman, F.
Dias, H.
Arruda-Neto, J. D. T.
Hussein, M. S.
and
Kerman, A. K.
2009.
Erratum: Particle-hole level densities in deformed nuclei [Phys. Rev. C60, 064311 (1999)].
Physical Review C,
Vol. 80,
Issue. 3,
Oudi, R.
Hassanabadi, S.
Rajabi, A.A.
and
Hasanabadi, H.
2012.
Approximate Bound State Solutions of DKP Equation for Any J State in the Presence of Woods—Saxon Potential.
Communications in Theoretical Physics,
Vol. 57,
Issue. 1,
p.
15.
Hamzavi, M.
and
Ikhdair, S. M.
2012.
Any J-State Solution of the Duffin–Kemmer–Petiau Equation for a Vector Deformed Woods–Saxon Potential.
Few-Body Systems,
Vol. 53,
Issue. 3-4,
p.
461.
Hamzavi, M.
Ikhdair, S. M.
and
Rajabi, A. A.
2013.
A semi-relativistic treatment of spinless particles subject to the nuclear Woods-Saxon potential.
Chinese Physics C,
Vol. 37,
Issue. 6,
p.
063101.
Ghominejad, Mehrdad
and
Hassanabadi, Somayyeh
2013.
Semi-relativistic two-body phase shifts states of Woods-Saxon potential.
The European Physical Journal Plus,
Vol. 128,
Issue. 6,
Hassanabadi, S.
Ghominejad, M.
Yazarloo, B. H.
Zarrinkamar, S.
and
Hassanabadi, H.
2013.
Two-body Spinless Salpeter equation for the Woods-Saxon potential.
Chinese Physics C,
Vol. 37,
Issue. 8,
p.
083102.
Hassanabadi, H.
Zarrinkamar, S.
and
Yazarloo, B. H.
2013.
The nonrelativistic oscillator strength of a hyperbolic-type potential.
Chinese Physics B,
Vol. 22,
Issue. 6,
p.
060202.
Ikhdair, Sameer M.
Falaye, Babatunde J.
and
Hamzavi, Majid
2013.
Approximate Eigensolutions of the Deformed Woods—Saxon Potential via AIM.
Chinese Physics Letters,
Vol. 30,
Issue. 2,
p.
020305.
Aslanzadeh, M.
and
Rajabi, A. A.
2014.
Analytical solution of relativistic three-body bound systems.
The European Physical Journal A,
Vol. 50,
Issue. 10,
Diaf, A
and
Roubehie, Dj
2015.
Any ℓ-state solutions of the Feynman propagator for the q-deformed Woods-Saxon potential in arbitrary dimensions.
Journal of Physics: Conference Series,
Vol. 574,
Issue. ,
p.
012001.
Achouri, Karim
and
Caloz, Christophe
2018.
Design, concepts, and applications of electromagnetic metasurfaces.
Nanophotonics,
Vol. 7,
Issue. 6,
p.
1095.
2020.
The Transfer-Matrix Method in Electromagnetics and Optics.
Mackay, Tom G.
and
Lakhtakia, Akhlesh
2020.
The Transfer-Matrix Method in Electromagnetics and Optics.
p.
11.
Asadchy, Viktar S.
Mirmoosa, Mohammad Sajjad
Díaz-Rubio, Ana
Fan, Shanhui
and
Tretyakov, Sergei A.
2020.
Tutorial on Electromagnetic Nonreciprocity and its Origins.
Proceedings of the IEEE,
Vol. 108,
Issue. 10,
p.
1684.