activity
20142023
most citedCharacterizing non-Markovianity via quantum interferometric power

93 citations · 159 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph2023

Steady-state Quantum Thermodynamics with Synthetic Negative Temperatures

Mohit Lal Bera, Tanmoy Pandit, Kaustav Chatterjee +4

A bath with a negative temperature is a subject of intense debate in recent times. It raises fundamental questions not only on our understanding of negative temperature of a bath i…

quant-ph2022

Quantum Bayes' Rule Affirms Consistency in Measurement Inferences in Quantum Mechanics

Mohit Lal Bera, Manabendra Nath Bera

Classical Bayes' rule lays the foundation for the classical causal relation between cause (input) and effect (output). This causal relation is believed to be universally true for a…

quant-ph201649 cited

Uncertainty Relations for Quantum Coherence

Uttam Singh, Arun Kumar Pati, Manabendra Nath Bera

Coherence of a quantum state intrinsically depends on the choice of the reference basis. A natural question to ask is the following: if we use two or more incompatible reference ba…

quant-ph201593 cited

Characterizing non-Markovianity via quantum interferometric power

Himadri Shekhar Dhar, Manabendra Nath Bera, Gerardo Adesso

Non-Markovian evolution in open quantum systems is often characterized in terms of the backflow of information from environment to system and is thus an important facet in investig…

quant-ph201413 cited

Role of quantum correlation in metrology beyond standard quantum limit

Manabendra N. Bera

Quantum metrology is studied in the presence of quantum correlation. The quantum correlation measure based on quantum Fisher information enables us to gain a deeper insight on how…

quant-ph20144 cited

Quantum Fisher information as the measure of Gaussian quantum correlation: Role in quantum metrology

Manabendra N. Bera

We have introduced a measure of Gaussian quantum correlations based on quantum Fisher information. For bipartite Gaussian states the minimum quantum Fisher information due to local…