collaborators

6 papers

quant-ph2025

Enabling Fast and Accurate Neutral Atom Readout through Image Denoising

Chaithanya Naik Mude, Linipun Phuttitarn, Satvik Maurya +3

Neutral atom quantum computers hold promise for scaling up to hundreds of thousands or more qubits, but their progress is constrained by slow qubit readout. Parallel measurement of…

quant-ph2025

Accurate Leakage Speculation for Quantum Error Correction

Chaithanya Naik Mude, Swamit Tannu

Quantum Error Correction (QEC) protects qubits against bit- and phase-flip errors in the |0> or |1> subspace, but physical qubits can also leak into higher energy levels (e.g., |2>…

quant-ph2025

Efficient measurement of neutral-atom qubits with matched filters

Robert M. Kent, Linipun Phuttitarn, Chaithanya Naik Mude +4

Quantum computers require high-fidelity measurement of many qubits to achieve a quantum advantage. Traditional approaches suffer from readout crosstalk for a neutral-atom quantum p…

quant-ph2025

Efficient and Scalable Architectures for Multi-Level Superconducting Qubit Readout

Chaithanya Naik Mude, Satvik Maurya, Benjamin Lienhard +1

Realizing the full potential of quantum computing requires large-scale quantum computers capable of running quantum error correction (QEC) to mitigate hardware errors and maintain…

cs.ET2024

Crosstalk-induced Side Channel Threats in Multi-Tenant NISQ Computers

Navnil Choudhury, Chaithanya Naik Mude, Sanjay Das +3

As quantum computing rapidly advances, its near-term applications are becoming increasingly evident. However, the high cost and under-utilization of quantum resources are prompting…

quant-ph2024

Understanding Side-Channel Vulnerabilities in Superconducting Qubit Readout Architectures

Satvik Maurya, Chaithanya Naik Mude, Benjamin Lienhard +1

Frequency-multiplexing is an effective method to achieve resource-efficient superconducting qubit readout. Allowing multiple resonators to share a common feedline, the number of ca…