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Controlling Imperfections in Quantum Devices

Implementing Organization

Principal Investigator
Dr. Amit Kumar Pal
Indian Institute of Technology (IIT) Palakkad, Kerala  
CO-Principal Investigator
Prof. Aditi sen De
Harish-Chandra Research Institute, Prayagraj, Uttar Pradesh

Project Overview

Over the past three decades, quantum technology has led to the development of quantum devices, including quantum computers, quantum communication devices, and small-scale quantum appliances like quantum thermal machines and sensors. To achieve "quantum supremacy," noisy intermediate-scale quantum (NIsQ) devices made of 50-100 qubits are being tested for various quantum tasks, including hosting high-quality logical qubits. Miniaturization of machines, such as refrigerators, batteries, transistors, and diodes, is also being explored. The quantum states in these systems are characterized by quantum correlations like entanglement, quantum discord, and coherence. However, characterizing quantum machines using these correlations can be challenging due to resource-intensive state readout protocols and noise. The current project aims to modify the protocol for quantifying quantum correlations and test the results in quantum devices, including thermal machines and quantum codes.

Source

Source
science and Engineering Research Board (sERB), DsT
Funding Organization
Quick Information
Area of Research
Physical Sciences
Focus Area
Quantum Information Theory
Start Date
2024
End Date
2027
Status
ongoing
Contact
amit@iitpkd.ac.in
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
Publications
00
No. of Patents
Filed : 00
Grant : 00
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