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Dive into the research topics where Oleg Evnin is active.

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Featured researches published by Oleg Evnin.


Journal of High Energy Physics | 2009

Can free strings propagate across plane wave singularities

Ben Craps; Frederik De Roo; Oleg Evnin

We study free string propagation in families of plane wave geometries developing strong scale-invariant singularities in certain limits. We relate the singular limit of the evolution for all excited string modes to that of the center-of-mass motion (the latter existing for discrete values of the overall plane wave profile normalization). Requiring that the entire excitation energy of the string should be finite turns out to be quite restrictive and essentially excludes consistent propagation across the singularity, unless dimensionful scales are introduced at the singular locus (in an otherwise scale-invariant space-time).


Journal of High Energy Physics | 2008

Quantum evolution across singularities

Ben Craps; Oleg Evnin

Attempts to consider evolution across space-time singularities often lead to quantum systems with time-dependent Hamiltonians developing an isolated singularity as a function of time. Examples include matrix theory in certain singular time-dependent backgounds and free quantum fields on the two-dimensional compactified Milne universe. Due to the presence of the singularities in the time dependence, the conventional quantum-mechanical evolution is not well-defined for such systems. We propose a natural way, mathematically analogous to renormalization in conventional quantum field theory, to construct unitary quantum evolution across the singularity. We carry out this procedure explicitly for free fields on the compactified Milne universe and compare our results with the matching conditions considered in earlier work (which were based on the covering Minkowski space).


Journal of High Energy Physics | 2009

p-branes on the waves

Ben Craps; Frederik De Roo; Oleg Evnin; Federico Galli

We present a large family of simple, explicit ten-dimensional supergravity solutions describing extended extremal supersymmetric Ramond-Ramond p-branes embedded into time-dependent dilaton-gravity plane waves of an arbitrary (isotropic) profile, with the brane world-volume aligned parallel to the propagation direction of the wave. Generalizations to the non-extremal case are not analyzed explicitly, but can be pursued as indicated.


Journal of High Energy Physics | 2008

On discrete features of the wave equation in singular pp-wave backgrounds

Oleg Evnin; T. Nguyen

We analyze the wave equation in families of pp-wave geometries developing strong localized scale-invariant singularities in certain limits. For both cases of well-localized pp-waves and the so-called null-cosmologies, we observe an intriguing discrete dependence of the existence of a singular limit on the normalization of the pp-wave profile. We also find restrictive matching conditions relating the geometries before and after the singularity (if a singular limit for the solutions of the wave equation with initial conditions specified away from the near-singular region is assumed to exist).


Physical Review A | 2017

Exact lowest-Landau-level solutions for vortex precession in Bose-Einstein condensates

Anxo Biasi; Piotr Bizoń; Ben Craps; Oleg Evnin

The Lowest Landau Level (LLL) equation emerges as an accurate approximation for a class of dynamical regimes of Bose-Einstein Condensates (BEC) in two-dimensional isotropic harmonic traps in the limit of weak interactions. Building on recent developments in the field of spatially confined extended Hamiltonian systems, we find a fully nonlinear solution of this equation representing periodically modulated precession of a single vortex. Motions of this type have been previously seen in numerical simulations and experiments at moderately weak coupling. Our work provides the first controlled analytic prediction for trajectories of a single vortex, suggests new targets for experiments, and opens up the prospect of finding analytic multi-vortex solutions.


Protein Science | 2009

Free string evolution across plane wave singularities

Ben Craps; F. De Roo; Oleg Evnin

In these proceedings, we summarize our studies of free string propagation in (near-)singular scale-invariant plane wave geometries. We analyze the singular limit of the evolution for the center-of-mass motion and all excited string modes. The requirement that the entire excitation energy of the string should be finite excludes consistent propagation across the singularity, in case no dimensionful scales are introduced at the singular locus (in an otherwise scale-invariant space-time).


Protein Science | 2008

Notes on quantum evolution across singularities

Oleg Evnin

In a number of model contexts, evolution across space-time singularities (reminiscent of the cosmological singularities) involves time-dependent quantum Hamiltonians developing a singularity as a function of time. In this contribution to the proceedings of the 3rd RTN workshop in Valencia, I review some recent investigations of the general properties of such systems.


Journal of High Energy Physics | 2008

Quantum evolution across singularities: the case of geometrical resolutions

Ben Craps; Frederik De Roo; Oleg Evnin


Physical Review E | 2018

Two infinite families of resonant solutions for the Gross-Pitaevskii equation

Anxo Biasi; Piotr Bizoń; Ben Craps; Oleg Evnin


arXiv: Exactly Solvable and Integrable Systems | 2018

Solvable cubic resonant systems

Anxo Biasi; Piotr Bizoń; Oleg Evnin

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Ben Craps

Vrije Universiteit Brussel

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Piotr Bizoń

Jagiellonian University

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Frederik De Roo

Vrije Universiteit Brussel

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Federico Galli

Vrije Universiteit Brussel

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T. Nguyen

California Institute of Technology

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