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Featured researches published by E. Algin.


Physical Review C | 2006

Breaking of nucleon Cooper pairs at finite temperature in {sup 93-98}Mo

K. Kaneko; M. Hasegawa; U. Agvaanluvsan; E. Algin; R. Chankova; M. Guttormsen; A. C. Larsen; G. E. Mitchell; J. Rekstad; A. Schiller; S. Siem; A. Voinov

The S shape of the canonical heat-capacity curve is known as a signature of the pairing transition, and along an isotopic chain it is significantly more pronounced for nuclei with an even number of neutrons than for those with an odd number. Although the heat capacities extracted from experimental level densities in {sup 93-98}Mo exhibit a clear S shape, they do not show such an odd-even staggering. To understand the underlying physics, we analyze thermal quantities evaluated from the partition function calculated using the static-path plus random-phase approximation (SPA+RPA) in a monopole pairing model with number-parity projection. The calculated level densities reproduce very well the experimental data, and they also agree with estimates made using the back-shifted Fermi-gas model. We clarify the reason why the heat capacities for Mo isotopes do not show odd-even staggering of the S shape. We also discuss thermal odd-even mass differences in {sup 94-97}Mo that were calculated using the three-, four-, and five-point formulas. These thermal mass differences are regarded as indicators of pairing correlations at finite temperature.


Physical Review C | 2006

Level density of Fe 56 and low-energy enhancement of γ-strength function

A. Voinov; S. M. Grimes; U. Agvaanluvsan; E. Algin; T. Belgya; C. R. Brune; M. Guttormsen; M. J. Hornish; T. N. Massey; G. E. Mitchell; J. Rekstad; A. Schiller; S. Siem

The


Physics Letters B | 2006

Low-energy M1 excitation mode in 172Yb

A. Schiller; A. Voinov; E. Algin; John A Becker; Lee Allen Bernstein; P. E. Garrett; M. Guttormsen; R. O. Nelson; J. Rekstad; S. Siem

^{55}


Radiation Protection Dosimetry | 2014

Seasonal indoor radon concentration in Eskisehir, Turkey

H. Sogukpinar; E. Algin; C. Asici; M. Altinsoz; H. Cetinkaya

Mn


Proc. of the International Conference on Frontiers in Nuclear Structure, Astrophysics and Reactions | 2011

Gamma-ray strength functions and their relation to astrophysics

A. C. Larsen; S. Goriely; E. Algin; U. Agvaanluvsan; A. Bürger; A. Görgen; M. Guttormsen; T. W. Hagen; T. Lönnroth; G. E. Mitchell; H. T. Nyhus; J. Rekstad; T. Renstro; S. J. Rose; I. E. Ruud; A. Schiller; S. Siem; N. U. H. Syed; H. K. Toft; G. M. Tveten; A. Voinov; K. Wikan

(d,n)^{56}


Journal of Physics: Conference Series | 2016

Nuclear level densities and gamma-ray strength functions of 145,149,151Nd isotopes

K O Ay; M Ozgur; E. Algin; M. Guttormsen; F. L. Bello Garrote; L. Crespo Campo; A. Görgen; T. W. Hagen; V. W. Ingeberg; B. V. Kheswa; M. Klintefjord; Ann-Cecilie Larsen; J. E. Midtbø; V Modamio; T. Renstrøm; S. J. Rose; E. Sahin; S. Siem; G. M. Tveten; F. Zeiser

Fe differential cross section is measured at


Physics of Atomic Nuclei | 2007

Bulk properties of iron isotopes

E. Algin; A. Schiller; A. V. Voinov; U. Agvaanluvsan; T. Belgya; Lee Allen Bernstein; C. R. Brune; R. Chankova; P. E. Garrett; S. M. Grimes; M. Guttormsen; M. Hjorth-Jensen; M. J. Hornish; Calvin W. Johnson; T. N. Massey; G. E. Mitchell; J. Rekstad; S. Siem; W. Younes

E_d=7


Physical Review C | 2006

Primary versus secondaryγintensities inYb171(nth,γ)

A. Schiller; A. Voinov; E. Algin; L. A. Bernstein; P. E. Garrett; M. Guttormsen; R. O. Nelson; J. Rekstad; S. Siem

MeV\@. The


AIP Conference Proceedings | 2005

Entropy In Hot Nuclei

S. Siem; U. Agvaanluvsan; E. Algin; T. Belgya; L. A. Bernstein; R. Chankova; M. Guttormsen; F. Ingebretsen; T. Lönnroth; S. Messelt; G. E. Mitchell; J. Rekstad; A. Schiller; A. C. Sunde; N. U. H. Syed; A. Voinov; S. Ødegård

^{56}


Physics Letters B | 2004

Establishment of M1 multipolarity of a 6.5 (micro)2n resonance in 172Yb at E(gamma) = 3.3 MeV

A. Schiller; A. Voinov; E. Algin; J. A. Becker; L. A. Bernstein; P. E. Garrett; M. Guttormsen; R. O. Nelson; J. Rekstad; S. Siem

Fe level density obtained from neutron evaporation spectra is compared to the level density extracted from the

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A. Schiller

Michigan State University

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G. E. Mitchell

North Carolina State University

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U. Agvaanluvsan

North Carolina State University

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L. A. Bernstein

Lawrence Livermore National Laboratory

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