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S. Bondarenko

Publications and source records attributed to S. Bondarenko.

At least 19 recordsLinked to original sources

On the structure of black hole interior in a model of scalar quasi-particles within the GR framework

We propose an effective, singularity-free model of the black hole interior described entirely by a scalar field with a non-linear self-interaction potential. The interior consists of three layers -- a core, a transition layer, and a crust -- each fixed by the local quasi-particle density and the corresponding extremum of the potential of the field. The crust is a layer of massive, positive-energy thermal excitations above the zero-potential well, beneath a genuine Schwarzschild horizon at $r = 2GM_{\rm ADM}$. The core is an AdS-type region of negative energy density, it simulates a condensate of quasi-particles which carry zero classical kinetic energy and form a negative potential well governed by a negative inverse temperature parameter. The two regions are joined through Israel matching across the transition layer, which sits at an approximately null-gravity hypersurface of maximal regular matter density and where both the sign of the energy density and the type of thermal excitations change. Solving the static Einstein equations, we obtain the metric and mass functions of each layer, the edge equation of state of the crust, the linear stability condition of the null-gravity surface for ordinary and effectively negative mass matter, and the two-temperature thermodynamics linking the kinetic excitations to the negative temperature ground state. The framework unifies core and crust within a single field description and highlights the role of the negative energy AdS core and the associated negative temperature notion in describing black hole interior. In this picture the formation and Hawking evaporation of a black hole appear as a quasi-static cycle of an almost adiabatic thermodynamic engine, with the negative energy core as the working substance.

gr-qc

Space-like pion off-shell form factors in the Bethe-Salpeter approach

In the paper, the off-shell electromagnetic pion form factors in the Bethe-Salpeter formalism are considered. The separable kernel of the first rank quark-antiquark interaction is used to solve the equation analytically. The semi-off-shell pion form factors \( F_1 \) and \( F_2 \), which are related to each other by the Ward-Takahashi identity, are calculated. The obtained off-shell form factors as well as static properties of the pion are compared with the results of other authors.

hep-ph

Pion in the Bethe-Salpeter approach with separable kernel

In the paper, the static and dynamic properties of the pion in the Bethe-Salpeter approach are considered. The rank-one separable kernel of the quark-antiquark interaction is used to solve the equation analytically. Multidimensional integrals describing pion properties are calculated by several numerical methods and compared with previous papers. An error in the calculation of the interaction part of the elastic pion form factor is found. Using the corrected results, the kernel parameters are refitted. The calculated static properties as well as transition and elastic form factors are presented in comparison with the recent experimental data.

hep-ph

Relativistic four-nucleon calculations with rank-one separable potential

A solution to the relativistic generalization of the four-particle integral Faddeev-Yakubovsky equation is carried out. Only states with zero orbital angular momentum, $S$ states, are considered in the calculations. A rank-one separable potential for nucleon-nucleon interaction is used to solve the two-nucleon Bethe-Salpeter equation. Calculations are carried out taking into account both "3+1" and "2+2" subchannels in the equation. The system of integral equations is solved by the iteration method and the binding energy of the helium-4 nucleus is found. The calculated results are compared with experimental data and nonrelativistic.

nucl-th

EW one-loop corrections to the longitudinally polarized Drell-Yan process. Charged-current case II

Complete one-loop electroweak radiative corrections to the charged-current Drell-Yan processes $pp \to \ell^{+}ν_{\ell}(+X)$ and $pp \to \ell^{-}\barν_{\ell}(+X)$ are presented for the case of longitudinal polarization of initial particles. The results can be used to obtain precise predictions for the kinematic distributions of polarized $W^{\pm}$ production cross sections, and single- and double-spin asymmetries. Numerical results are obtained using the Monte-Carlo generator {\tt ReneSANCe}. This research contributes to a global next-to-leading order analysis of polarized parton distributions in proton-proton collisions at RHIC. We proved that the impact of the one-loop electroweak radiative corrections to single- and double-spin asymmetries is negligible.

hep-ph

One-loop electroweak radiative corrections to polarized $e^+e^- \to Z Z$ process

In the paper we recalculate and discuss high-precision theoretical predictions for cross sections of the process $e^+e^- \to Z Z$. We assume a complete one-loop implementation and a possibility of estimating the initial state polarizations, as well as the full-phase calculation. Numerical results are provided by our Monte-Carlo tools MCSANC integrator and ReneSANCe generator for typical energies and degrees of polarization of ILC and CLIC projects in two $α(0)$ and G$_μ$ electroweak schemes.

hep-ph

Description of Bhabha-scattering at small angles using the Monte Carlo generator ReneSANCe

Results of a simulation of Bhabha small-angle scattering process at center-of-mass energy of 240~GeV and at the $Z$-boson resonance using the Monte Carlo generator {\tt{ReneSANCe}} are presented. For the given accuracy about $10^{-4}$ in estimating luminosity of future electron-positron accelerators, the minimum cutoff angle for simulated events is established.

hep-ph

One-loop electroweak radiative corrections to polarized $e^+e^- \to γZ$ process

This paper gives high-precision theoretical predictions for cross sections of the process $e^+e^- \to γZ$ for future electron-positron colliders. The calculations are performed using the SANC system. They include complete one-loop electroweak radiative corrections, as well as longitudinal polarization of the initial state. Numerical results are given for the center-of-mass system energy range $\sqrt{s} = 250 - 1000$ GeV with various polarization degrees in the $α(0)$ and $G_μ$ EW schemes. This study is a contribution to the research program of the CEPC project being under development in China.

hep-ph

Electroweak radiative corrections to polarized top quark pair production

Electroweak effects in the $e^+e^- \to t \bar{t}$ annihilation process are described with taking into account polarization of the initial and final particles. We investigate the effects of complete one-loop electroweak radiative corrections and higher-order radiative effects to the total cross section and analyze different types of asymmetries for polarized initial and final states for typical energies and degrees of polarization of the ILC and CLIC projects. Numerical results are obtained with the help of Monte Carlo tools: the ReneSANCe event generator and the MCSANC integrator.

hep-ph

Electroweak Effects in Neutral Current Drell-Yan Processes within SANC System

The complete one-loop electroweak radiative corrections to the neutral current Drell-Yan process $pp \to \ell^+\ell^- X$ are presented for the case of longitudinal polarization of initial particles. The calculations are based on the SANC computer system. The paper contains a brief description of the SANC approach and a discussion of the sources of theoretical uncertainties in electroweak effects.

hep-ph

One-loop radiative corrections to photon-pair production in polarized positron-electron annihilation

A theoretical description of photon-pair production in polarized positron-electron annihilation is presented. Complete one-loop electroweak radiative corrections are calculated taking into account the exact dependence on the electron mass. Analytical results are derived with the help of the SANC~system. The relevant contributions to the cross section are calculated analytically using the helicity amplitude approach. The cases of unpolarized and longitudinally polarized fermions in the initial state are investigated. Calculations are realized in the Monte Carlo integrator MCSANCee and generator ReneSANCe which allow one the implementation of any experimental cuts used in the analysis of $e^+e^-$ annihilation data of both low and high energies.

hep-ph

Effects of electroweak radiative corrections in polarized low-energy electron-positron annihilation into lepton pairs

Complete one-loop electroweak radiative corrections to the cross section of the process $e^+e^- \to μ^-μ^+ (τ^-τ^+)$ are evaluated with the help of the \SANC system. Higher-order contributions of the initial state radiation are computed in the QED structure function formalism. Numerical results are given for the center-of-mass energy range $\sqrt{s}=5, ~7$~GeV for various polarization degrees of the initial particles.

hep-ph

EW one-loop corrections to the longitudinally polarized Drell--Yan scattering. (I). The Neutral current case

Complete one-loop electroweak corrections to neutral current Drell-Yan process $p p \to \ell^+\ell^- X$ are presented for the case of longitudinal polarization of initial particles. Cross sections for longitudinally polarized protons allow us to estimate different combinations of polarized quark distributions from single- and double-spin asymmetries. Numerical impact of electroweak next-order corrections to asymmetries as function of the vector boson rapidity and lepton pseudorapidities in the hadron-hadron centre-of-mass frame using the MC generator ReneSANCe is thoroughly studied.

hep-ph

Dynamical signature: complex manifolds, gauge fields and non-flat tangent space

Theoretical possibilities of models of gravity with dynamical signature are discussed. The different scenarios of the signature change are proposed in the framework of Einstein-Cartan gravity. We consider, subsequently, the dynamical signature in the model of the complex manifold with complex coordinates and complex metric introduced, a complexification of the manifold and coordinates through new gauge fields, an additional gauge symmetry for the Einsten-Cartan vierbein fields and non-flat tangent space for the metric in the Einstein-Cartan gravity. A new small parameter, which characterizes a degree of the deviation of the signature from the background one, is introduced in all models. The zero value of this parameter corresponds to the signature of an initial background metric. In turn, in the models with gauge fields present, this parameter represents a coupling constant of the gauge symmetry group. The mechanism of metric's determination through induced gauge fields with defined signature in the corresponding models is considered. The ways of the signature change through the gauge fields dynamics are reviewed, the consequences and applications of the proposed ideas are discussed as well.

gr-qc

Time kink: modeling change of metric signature

The model of a signature change of a metric from the Lorenztian to Euclidean one with the use of a time dependent kink as $g_{00}$ component of the metric is considered. The metric which describes the continuous change of the signature of this type on a hypersurface is constructed and corresponding Einstein equations are solved in both regions of the space-time. The discontinuities of the Einstein tensor components on the hypersurface are discussed as well as junction conditions for the parameters of the solutions. Additionally, the properties of a transition from the space-time with one signature to an another are discussed, the presence of an inflation in the model is demonstrated as a consequence of the signature change without any additional fields required.

gr-qc

On the proton-deuteron backward scattering

The article is devoted to the relativistic study of elastic $pD$ backward scattering based on the one-nucleon exchange diagram. Calculations were performed using relativistic deuteron wave functions obtained by solving the Bethe-Salpeter equation in the Minkowski space with relativistic separable potentials. The unpolarized differential cross section as well as some polarization observables of the reaction for initial proton momentum up to 7.3 GeV were calculated. The obtained results are compared with the calculations of other authors.

nucl-th

Riemann-Cartan gravity with dynamical signature

Model of Riemann-Cartan gravity with varying signature of metric is considered. The basic dynamical variables of the formalism are vierbein, spin connection, and an internal metric in the tangent space. The corresponding action contains new terms, which depend on these fields. In general case the signature of the metric is determined dynamically. The Minkowski signature is preferred dynamically because the configurations with the other signatures are dynamically suppressed. We also discuss briefly the motion of particles in the background of the modified black hole configuration, in which inside the horizon the signature is that of Euclidean space - time.

gr-qc