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20172020
most citedDepth-Optimal Quantum Circuit Placement for Arbitrary Topologies

28 citations · 32 across the 3 of their papers we have counts for

collaborators

6 papers

cs.AR2020

CONTRA: Area-Constrained Technology Mapping Framework For Memristive Memory Processing Unit

Debjyoti Bhattacharjee, Anupam Chattopadhyay, Srijit Dutta +2

Data-intensive applications are poised to benefit directly from processing-in-memory platforms, such as memristive Memory Processing Units, which allow leveraging data locality and…

quant-ph20194 cited

MUQUT: Multi-Constraint Quantum Circuit Mapping on Noisy Intermediate-Scale Quantum Computers

Debjyoti Bhattacharjee, Abdullah Ash Saki, Mahabubul Alam +2

Rapid advancement in the domain of quantum technologies has opened up researchers to the real possibility of experimenting with quantum circuits and simulating small-scale quantum…

cs.ET2019

New techniques for fault-tolerant decomposition of Multi-Controlled Toffoli gate

Laxmidhar Biswal, Debjyoti Bhattacharjee, Anupam Chattopadhyay +1

Physical implementation of scalable quantum architectures faces an immense challenge in form of fragile quantum states. To overcome it, quantum architectures with fault tolerance i…

cs.ET2018

Crossbar-Constrained Technology Mapping for ReRAM based In-Memory Computing

Debjyoti Bhattacharjee, Yaswanth Tavva, Arvind Easwaran +1

In recent times, Resistive RAMs (ReRAMs) have gained significant prominence due to their unique feature of supporting both non-volatile storage and logic capabilities. ReRAM is als…

cs.ET2018

Quantum Circuits for Toom-Cook Multiplication

Srijit Dutta, Debjyoti Bhattacharjee, Anupam Chattopadhyay

In this paper, we report efficient quantum circuits for integer multiplication using Toom-Cook algorithm. By analysing the recursive tree structure of the algorithm, we obtained a…

cs.ET201728 cited

Depth-Optimal Quantum Circuit Placement for Arbitrary Topologies

Debjyoti Bhattacharjee, Anupam Chattopadhyay

A significant hurdle towards realization of practical and scalable quantum computing is to protect the quantum states from inherent noises during the computation. In physical imple…