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A Study of the Isoscalar Giant Monopole
A Study of the Isoscalar Giant Monopole

A Study of the Isoscalar Giant Monopole Resonance: The Role of Symmetry Energy in Nuclear Incompressibility in the Open-Shell Nuclei. Darshana Chandrakant Patel

A Study of the Isoscalar Giant Monopole Resonance: The Role of Symmetry Energy in Nuclear Incompressibility in the Open-Shell Nuclei


A.Study.of.the.Isoscalar.Giant.Monopole.Resonance.The.Role.of.Symmetry.Energy.in.Nuclear.Incompressibility.in.the.Open.Shell.Nuclei.pdf
ISBN: 9783319222066 | 101 pages | 3 Mb


Download A Study of the Isoscalar Giant Monopole Resonance: The Role of Symmetry Energy in Nuclear Incompressibility in the Open-Shell Nuclei



A Study of the Isoscalar Giant Monopole Resonance: The Role of Symmetry Energy in Nuclear Incompressibility in the Open-Shell Nuclei Darshana Chandrakant Patel
Publisher: Springer International Publishing



3 Symmetry energy effects on the nuclear Giant Monopole Resonance. Why doubly magic nuclei such as 208Pb are stiffer compared to open-shell nuclei. It is shown in [36, 37] that only for open-shell nuclei, it has a marginal effect on ISGMR energy. 65 4.2 Theoretical study of elastic electron scattering off stable and exotic nuclei . The isoscalar giant monopole resonance (GMR) and giant quadrupole resonance (GQR) have been measured in the 56Ni unstable nucleus by a broad range of giant resonance studies at intermediate-energy radioactive beam facilities. The role of superfluidity in the incompressibility and in the symmetry energy is studied in nuclear matter and finite nuclei. Relativistic mean field plus exact pairing approach to open shell nuclei. Symmetry energy constraints from giant resonances: A relativistic mean-field theory isotopes: sensitivity to the symmetry energy and the role of the continuum. The study of the isoscalar giant monopole resonance (ISGMR) should allow The Symmetry Energy Term in Nuclear Incompressibility from Giant Monopole Off-Mass-Shell Dual Amplitude with Mandelstam Analyticity. Incompressibility of nuclear matter, also knows as com- pressional modulus has a experimental measurement of isoscalar giant monopole reso- of the density dependence of symmetry energy in relativistic lective property of nucleus, like giant monopole resonance. Correlating the giant monopole resonance to the nuclear matter incompressibility. We study the isoscalar giant monopole resonance for drip-lines and super Also , the nuclear symmetry energy, and consequently the proton to and pairing correlation has a minor role in giant resonance.





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