1986
DOI: 10.1088/0305-4616/12/3/008
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Bonding potential and the mechanism of quasi-molecular states

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Cited by 25 publications
(33 citation statements)
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“…Taking the rotational spacing of the 6n LCC as h /2+=22 keV (as predicted by the CCM) and that of two touching C nuclei in the elastic band as 90 keV results in a band crossing at E 50 MeV for L=16 [6], confirming observation of the L=14,16 dominant angular momenta [2]. An alternative explanation is o8'ered by Satpathy and Sarangi, who have applied a dynamic bonding-potential model [10] to the 02 +02 channel [11], as an extension of their dinucleus rotation-vibration picture of C+ C scattering resonances [12]. An increase in cross section at E, =33.09 MeV with L=14 is predicted, precluding the necessity for population of any compound state in Mg.…”
Section: Introductionsupporting
confidence: 53%
“…Taking the rotational spacing of the 6n LCC as h /2+=22 keV (as predicted by the CCM) and that of two touching C nuclei in the elastic band as 90 keV results in a band crossing at E 50 MeV for L=16 [6], confirming observation of the L=14,16 dominant angular momenta [2]. An alternative explanation is o8'ered by Satpathy and Sarangi, who have applied a dynamic bonding-potential model [10] to the 02 +02 channel [11], as an extension of their dinucleus rotation-vibration picture of C+ C scattering resonances [12]. An increase in cross section at E, =33.09 MeV with L=14 is predicted, precluding the necessity for population of any compound state in Mg.…”
Section: Introductionsupporting
confidence: 53%
“…[9] also lead to these observations. However, the resonance states can originate not only from the potential pocket but also from the barrier top region provided absorption is not large in the barrier region and the barrier is reasonably Aat The characterization of resonances and their role in the analysis of scattering amplitude is an important aspect of potential scattering.…”
Section: Introductionmentioning
confidence: 61%
“…Khosla et al [8] improved the orbiting cluster model by incorporating the generalized moment of inertia in the two-central-shell model. Satpathy and co-workers [9] have studied the nuclear molecular resonances using larger range Morse potentials to generate the resonance states. Cindro and Cxreiner [10] have used the potential approach with an anharrnonic potential well with a negative quartic term.…”
Section: Introductionmentioning
confidence: 99%
“…too shallow [17]. These rotation-vibration approaches of [18,19] cannot explain the multitude of states with same`-value in our + 28 Si rotational structure (see fig. 11, right panel, of [5]): translating the classical vibrational amplitude A to a quantum energy gives the semiclassical expression A 2 = 2n + 1 2 h 2 =m h!…”
Section: -Discussion and Outlookmentioning
confidence: 87%