Search results for "particle level"
showing 8 items of 158 documents
"Table 58" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$\chi^{t\bar{t}}$ correlation matrix for the normalized differential cross-section at particle level
"Table 56" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$\chi^{t\bar{t}}$ correlation matrix for the absolute differential cross-section at particle level
"Table 62" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$|y_{B}^{t\bar{t}}|$ correlation matrix for the normalized differential cross-section at particle level
"Table 61" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$|y_{B}^{t\bar{t}}|$ covariance matrix for the normalized differential cross-section at particle level
"Table 60" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$|y_{B}^{t\bar{t}}|$ correlation matrix for the absolute differential cross-section at particle level
"Table 22" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ coll…
2019
$|y_{B}^{t\bar{t}}|$ normalized differential cross-section at particle level
"Table 0" of "Measurements of $t\bar{t}$ differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in $pp$ colli…
2019
inclusive absolute differential cross-section at particle level
Occupation probabilities of single particle levels using the microscopic interacting boson model: Application to some nuclei of interest in neutrinol…
2016
We have developed a new method to calculate the occupancies of single particle levels in atomic nuclei. This method has been developed in the context of the microscopic interacting boson model, in which neutron and proton degrees of freedom are treated explicitly. The energies of the single particle levels constitute a very important input for the calculation of the occupancies in this method. In principle these energies can be considered as input parameters that can be fitted to reproduce the experimental occupancies. Instead of fitting, in this study we have extracted the single particle energies from experimental data on nuclei with a particle more or one particle less than a shell closu…