most citedObjective Compressive Quantum Process Tomography

29 citations · 29 across the 1 of their papers we have counts for

collaborators
Showing quant-phShow all

7 papers · 1 filter

quant-ph2020

Experimental Estimation of Quantum State Properties from Classical Shadows

G. I. Struchalin, Ya. A. Zagorovskii, E. V. Kovlakov +2

Full quantum tomography of high-dimensional quantum systems is experimentally infeasible due to the exponential scaling of the number of required measurements on the number of qubi…

quant-ph201929 cited

Objective Compressive Quantum Process Tomography

Y. S. Teo, G. I. Struchalin, E. V. Kovlakov +6

We present a compressive quantum process tomography scheme that fully characterizes any rank-deficient completely-positive process with no a priori information about the process ap…

quant-ph2019

Idealised EPR states from non-phase matched parametric down conversion

C. Okoth, E. Kovlakov, F. Boensel +4

Entanglement of high dimensional states is becoming increasingly important for quantum communication and computing. The most common source of entangled photons is spontaneous param…

quant-ph2019

Experimental neural network enhanced quantum tomography

Adriano Macarone Palmieri, Egor Kovlakov, Federico Bianchi +4

Quantum tomography is currently ubiquitous for testing any implementation of a quantum information processing device. Various sophisticated procedures for state and process reconst…

quant-ph2019

The direct test of the absence of the "quantum vampire's" shadow with use of thermal light

K. G. Katamadze, E. V. Kovlakov, G. V. Avosopiants +1

Counterintuitive nature of quantum physics leads to a number of paradoxes. One of them is a "quantum vampire" effect [1] consisting in the fact, that photon annihilation in a part…

quant-ph2018

Quantum state engineering with twisted photons via adaptive shaping of the pump beam

Egor Kovlakov, Stanislav Straupe, Sergey Kulik

High-dimensional entanglement is a valuable resource for quantum communication, and photon pairs entangled in orbital angular momentum are commonly used for encoding high-dimension…