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20172022
most citedDevice-independent certification of maximal randomness from pure entangled two-qutrit states using non-projective measurements

15 citations · 15 across the 1 of their papers we have counts for

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quant-ph2022★ 15 cited

Device-independent certification of maximal randomness from pure entangled two-qutrit states using non-projective measurements

Jakub Jan Borkała, Chellasamy Jebarathinam, Shubhayan Sarkar +1

While it has recently been demonstrated how to certify the maximal amount of randomness from any pure two-qubit entangled state in a device-independent way [E. Woodhead et al., Phy…

quant-ph2021

Self-testing of any pure entangled state with minimal number of measurements and optimal randomness certification in one-sided device-independent scenario

Shubhayan Sarkar, Jakub J. Borkała, Chellasamy Jebarathinam +3

Certification of quantum systems and their properties has become a field of intensive studies. Here, taking advantage of the one-sided device-independent scenario (known also as qu…

quant-ph2019

Multiparty quantum random access codes

Debashis Saha, Jakub J. Borkala

Random access code (RAC), a primitive for many information processing protocols, enables one party to encode n-bit string into one bit of message such that another party can retrie…

quant-ph2019

Semi-device-independent self-testing of unsharp measurements

Nikolai Miklin, Jakub J. Borkała, Marcin Pawłowski

Unsharp quantum measurements provide a resource in scenarios where one faces the trade-off between information gain and disturbance. In this work we introduce a prepare-transform-m…

quant-ph2017

Connections Between Mutually Unbiased Bases and Quantum Random Access Codes

Edgar A. Aguilar, Jakub J. Borkała, Piotr Mironowicz +1

We present a new quantum communication complexity protocol, the promise--Quantum Random Access Code, which allows us to introduce a new measure of unbiasedness for bases of Hilbert…