The quantum phase-space formalism derives transverse energy-momentum tensor distributions in polarized nucleons and reproduces standard light-front distributions including bad components in the infinite-momentum frame.
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Relativistic EMT distributions in polarized nucleons recover good and bad light-front components in the IMF after including polarization effects.
A modified non-separable LFWF ansatz for pseudoscalar heavy quarkonia enables computation of zero-skewness GPDs, EM and gravitational form factors, and transverse distributions within the Schwinger-function framework.
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Transverse energy-momentum tensor distributions in polarized nucleons
The quantum phase-space formalism derives transverse energy-momentum tensor distributions in polarized nucleons and reproduces standard light-front distributions including bad components in the infinite-momentum frame.