We study the high-energy behavior of the scattering amplitudes in quantum electrodynamics beyond the leading order of the small electron mass expansion in the leading logarithmic approximation. In contrast to the Sudakov logarithms, the mass-suppressed double-logarithmic radiative corrections are induced by a soft electron pair exchange and result in enhancement of the power-suppressed contribution, which dominates the amplitudes at extremely high energies. Possible applications of our result to the analysis of the high-energy processes in quantum chromodynamics is also discussed
High-energy scattering in the saturation region is described by the evolution of color dipoles. In t...
I demonstrate that the leading logarithms for high-energy scattering can be obtained as a result of ...
In this work, we review the general aspects of the high energy resummation technique. Recently deriv...
AbstractWe study the high-energy behavior of the scattering amplitudes in quantum electrodynamics be...
We study the high-energy behavior of the scattering amplitudes in quantum electrodynamics beyond the...
AbstractWe study the high-energy behavior of the scattering amplitudes in quantum electrodynamics be...
We study the high-energy behavior of the scattering amplitudes in quantum electrodynamics beyond the...
We evaluate the two-loop O(me2/s) contribution to the wide-angle high-energy electron–positron scatt...
AbstractWe evaluate the two-loop O(me2/s) contribution to the wide-angle high-energy electron–positr...
We discuss two-loop leading and angular-dependent next-to-leading logarithmic electroweak virtual co...
This PhD thesis is concerned with one-loop virtual electroweak corrections to arbitrary processes in...
AbstractWe study electroweak Sudakov corrections in high energy scattering, and the cancellation bet...
In perturbation theory the infrared structure of the electroweak interactions produces large correct...
In perturbation theory the infrared structure of the electroweak interactions produces large correct...
To match the expected experimental precision at future linear colliders, improved theoretical predic...
High-energy scattering in the saturation region is described by the evolution of color dipoles. In t...
I demonstrate that the leading logarithms for high-energy scattering can be obtained as a result of ...
In this work, we review the general aspects of the high energy resummation technique. Recently deriv...
AbstractWe study the high-energy behavior of the scattering amplitudes in quantum electrodynamics be...
We study the high-energy behavior of the scattering amplitudes in quantum electrodynamics beyond the...
AbstractWe study the high-energy behavior of the scattering amplitudes in quantum electrodynamics be...
We study the high-energy behavior of the scattering amplitudes in quantum electrodynamics beyond the...
We evaluate the two-loop O(me2/s) contribution to the wide-angle high-energy electron–positron scatt...
AbstractWe evaluate the two-loop O(me2/s) contribution to the wide-angle high-energy electron–positr...
We discuss two-loop leading and angular-dependent next-to-leading logarithmic electroweak virtual co...
This PhD thesis is concerned with one-loop virtual electroweak corrections to arbitrary processes in...
AbstractWe study electroweak Sudakov corrections in high energy scattering, and the cancellation bet...
In perturbation theory the infrared structure of the electroweak interactions produces large correct...
In perturbation theory the infrared structure of the electroweak interactions produces large correct...
To match the expected experimental precision at future linear colliders, improved theoretical predic...
High-energy scattering in the saturation region is described by the evolution of color dipoles. In t...
I demonstrate that the leading logarithms for high-energy scattering can be obtained as a result of ...
In this work, we review the general aspects of the high energy resummation technique. Recently deriv...