16 papers
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…
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…
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…
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…
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…
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…