3 citations · 3 across the 1 of their papers we have counts for
6 papers
TILT: Achieving Higher Fidelity on a Trapped-Ion Linear-Tape Quantum Computing Architecture
Xin-Chuan Wu, Dripto M. Debroy, Yongshan Ding +4
Trapped-ion qubits are a leading technology for practical quantum computing. In this work, we present an architectural analysis of a linear-tape architecture for trapped ions. In o…
Fault-Tolerant Operation of a Quantum Error-Correction Code
Laird Egan, Dripto M. Debroy, Crystal Noel +8
Quantum error correction protects fragile quantum information by encoding it into a larger quantum system. These extra degrees of freedom enable the detection and correction of err…
Extended flag gadgets for low-overhead circuit verification
Dripto M. Debroy, Kenneth R. Brown
Flag verification techniques are useful in quantum error correction for detecting critical faults. Here we present an application of flag verification techniques to improving post-…
Architecting Noisy Intermediate-Scale Trapped Ion Quantum Computers
Prakash Murali, Dripto M. Debroy, Kenneth R. Brown +1
Trapped ions (TI) are a leading candidate for building Noisy Intermediate-Scale Quantum (NISQ) hardware. TI qubits have fundamental advantages over other technologies such as super…
Logical Performance of 9 Qubit Compass Codes in Ion Traps with Crosstalk Errors
Dripto M. Debroy, Muyuan Li, Shilin Huang +1
We simulate four quantum error correcting codes under error models inspired by realistic noise sources in near-term ion trap quantum computers: dephasing, gate overrotation,…
Stabilizer Slicing: Coherent Error Cancellations in LDPC Codes
Dripto Debroy, Muyuan Li, Michael Newman +1
Coherent errors are a dominant noise process in many quantum computing architectures. Unlike stochastic errors, these errors can combine constructively and grow into highly detrime…