collaborators

16 papers

cs.DB2026

Improving Join Order Optimization on Gate-Based Quantum Computers via Structured Parameter Initialization

Divya Shekar, Ruokun Wu, Dhanvi Bharadwaj +2

Join Order Optimization (JOO) is one of the most computationally expensive tasks in relational query optimization due to the exponential growth of possible join plans with increasi…

quant-ph2026

CryoZip: An Efficient Cryogenic Compressor for Quantum Error Correction Syndromes

Guanchen Tao, Alexander Knapen, Jacob Mack +4

Scaling fault tolerant quantum computing is increasingly constrained by the limited bandwidth and power budget across the 4 K to room temperature (RT) interface. We present CryoZip…

quant-ph2026

Stalls and Spequlation: Pipelined Execution for Fault Tolerant Quantum Computation

Aditi Awasthi, Gokul Subramanian Ravi, Jonathan Mark Baker

Fault-tolerant quantum computation requires the coordinated action of three distinct systems: classical control logic, quantum hardware, and classical error decoders. Current sched…

quant-ph2026

Classical State Preparation for Variational Quantum Algorithms via Reinforcement Learning

Gino Kwun, Dhanvi Bharadwaj, Gokul Subramanian Ravi

Variational Quantum Algorithms (VQAs) potentially offer a pathway to practical quantum advantage, but their optimization is heavily hindered by barren plateaus and numerous local m…

quant-ph2026

C-Phase-Aware Compilation for Efficient Fault-Tolerant Quantum Execution

Dhanvi Bharadwaj, Siddharth Dangwal, Yuewen Hou +1

Achieving practical quantum advantage on fault-tolerant quantum computers (FTQC) is fundamentally constrained by the substantial spatial and temporal overheads required to map logi…

quant-ph2026

Price and Payoff: Non-Determinism in Fault Tolerant Quantum Computation

Aditi Awasthi, Sayam Sethi, Sahil Khan +2

A promising approach to achieving scalable fault-tolerant quantum computation is the use of quantum error correction (QEC) codes augmented with magic states i.e. resource states pr…