activity
20142023
most citedObservation of solitons in oscillating waveguide arrays

37 citations · 57 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph20231 cited

Learning the tensor network model of a quantum state using a few single-qubit measurements

Sergei S. Kuzmin, Varvara I. Mikhailova, Ivan V. Dyakonov +1

The constantly increasing dimensionality of artificial quantum systems demands for highly efficient methods for their characterization and benchmarking. Conventional quantum tomogr…

quant-ph20231 cited

Large-scale error-tolerant programmable interferometer fabricated by femtosecond laser writing

Ilya V. Kondratyev, Veronika V. Ivanova, Sergey A. Zhuravitskii +8

We introduce a programmable 8-port interferometer with the recently proposed error-tolerant architecture capable of performing a broad class of transformations. The interferometer…

physics.optics20237 cited

Macroscopic Zeno effect in Su-Schrieffer-Heeger photonic topological insulator

S. K. Ivanov, S. A. Zhuravitskii, N. N. Skryabin +6

The quantum Zeno effect refers to slowing down of the decay of a quantum system that is affected by frequent measurements. Nowadays, the significance of this paradigm is extended f…

physics.optics202337 cited

Observation of solitons in oscillating waveguide arrays

Antonina A. Arkhipova, Yiqi Zhang, Yaroslav V. Kartashov +8

Floquet systems with periodically varying in time parameters enable realization of unconventional topological phases that do not exist in static systems with constant parameters an…

physics.optics201611 cited

Low-loss single-mode integrated waveguides in soda-lime glass

Ivan Dyakonov, Alexander Kalinkin, Mikhail Saygin +4

Low-loss single-mode optical waveguide fabrication process in extra-white soda-lime glass is demonstrated. Waveguiding structures are formed in bulk substrates employing femtosecon…

quant-ph2014

Direct Schmidt number measurement of high-gain parametric down conversion

I. V. Dyakonov, P. R. Sharapova, T. Sh. Iskhakov +1

In this work we estimate the transverse Schmidt number for the bipartite bright squeezed vacuum state by means of second-order intensity correlation function measurement. Assuming…