QCD sum rules of the nucleon channel are reanalyzed, using the maximum-entropy method (MEM). This new approach, based on the Bayesian probability theory, does not restrict the spectral function to the usual “pole + continuum” form, allowing a more flexible investigation of the nucleon spectral function. Making use of this flexibility, we are able to investigate the spectral functions of various interpolating fields, finding that the nucleon ground state mainly couples to an operator containing a scalar diquark. Moreover, we formulate the Gaussian sum rule for the nucleon channel and find that it is more suitable for the MEM analysis to extract the nucleon pole in the region of its experimental value, while the Borel sum rule does not contai...
We study the low-lying scalar mesons of light u, d, s flavors in the QCD sum rule. Having all possib...
We calculate the nucleon parameters in symmetric nuclear matter employing the QCD sum rules approach...
We present two unconventional methods of extracting information from hadronic 2-point functions prod...
Borel-transformed QCD sum rules conventionally use a real-valued parameter (the Borel mass) for spec...
Borel-transformed QCD sum rules conventionally use a real-valued parameter (the Borel mass) for spec...
QCD sum rules are used to study the nucleon current correlation function in an even-even nucleus in ...
Making use of a recently developed method of analyzing QCD sum rules, we investigate charmonium spec...
We present a novel approach to the inference of spectral functions from Euclidean time correlator da...
We study energy-weighted sum rules of the pion and kaon propagator in nuclear matter at finite tempe...
The sum rules serve a powerful tool to study the nucleon structure by providing a bridge between the...
In this thesis, QCD Laplace sum-rules for the light quark 'qq ' currents are employed to study the ...
The QCD Sum Rules method which links the hadronic degrees of freedom with the underlying QCD paramet...
We propose a method to calculate the QCD level density directly from the thermodynamic quantities ob...
A new approach of the QCD sum rule is proposed in which positive and negative-parity baryons couple ...
We present a pedagogical discussion of the Maximum Entropy Method which is a precise and systematic ...
We study the low-lying scalar mesons of light u, d, s flavors in the QCD sum rule. Having all possib...
We calculate the nucleon parameters in symmetric nuclear matter employing the QCD sum rules approach...
We present two unconventional methods of extracting information from hadronic 2-point functions prod...
Borel-transformed QCD sum rules conventionally use a real-valued parameter (the Borel mass) for spec...
Borel-transformed QCD sum rules conventionally use a real-valued parameter (the Borel mass) for spec...
QCD sum rules are used to study the nucleon current correlation function in an even-even nucleus in ...
Making use of a recently developed method of analyzing QCD sum rules, we investigate charmonium spec...
We present a novel approach to the inference of spectral functions from Euclidean time correlator da...
We study energy-weighted sum rules of the pion and kaon propagator in nuclear matter at finite tempe...
The sum rules serve a powerful tool to study the nucleon structure by providing a bridge between the...
In this thesis, QCD Laplace sum-rules for the light quark 'qq ' currents are employed to study the ...
The QCD Sum Rules method which links the hadronic degrees of freedom with the underlying QCD paramet...
We propose a method to calculate the QCD level density directly from the thermodynamic quantities ob...
A new approach of the QCD sum rule is proposed in which positive and negative-parity baryons couple ...
We present a pedagogical discussion of the Maximum Entropy Method which is a precise and systematic ...
We study the low-lying scalar mesons of light u, d, s flavors in the QCD sum rule. Having all possib...
We calculate the nucleon parameters in symmetric nuclear matter employing the QCD sum rules approach...
We present two unconventional methods of extracting information from hadronic 2-point functions prod...