7 papers
Approximate Quantum Linear Solvers for Hybrid CFD: End-to-End Analysis with a Chebyshev-LCU Approach
Tomer Goldfriend, Leigh Lapworth, Nadav Yoran +1
Quantum linear solvers are well studied as standalone quantum algorithms; however, in hybrid classical-quantum routines, their practical value must be evaluated at the level of the…
Implementation of a quantum linear solver for the Vlasov-Ampere equation
Tomer Goldfriend, Or Samimi Golan, Amir Naveh
We implement a quantum linear solver for the one-dimensional Vlasov-Ampere equation, following the model presented in Novikau et. al. (I. Novikau, I. Y. Dodin, and E. A. Startsev,…
Autocallable Options Pricing with Integration-Based Exponential Amplitude Loading
Francesca Cibrario, Ron Cohen, Emanuele Dri +8
We present a comprehensive quantum algorithm tailored for pricing autocallable options, offering a full implementation and experimental validation. Our experiments include simulati…
Scalable Memory Recycling for Large Quantum Programs
Israel Reichental, Ravid Alon, Lior Preminger +2
As quantum computing technology advances, the complexity of quantum algorithms increases, necessitating a shift from low-level circuit descriptions to high-level programming paradi…
Qmod: Expressive High-Level Quantum Modeling
Matan Vax, Peleg Emanuel, Eyal Cornfeld +8
Quantum computing hardware is advancing at a rapid pace, yet the lack of high-level programming abstractions remains a serious bottleneck in the development of new applications. Wi…
Design and synthesis of scalable quantum programs
Tomer Goldfriend, Israel Reichental, Amir Naveh +42
We present a scalable, robust approach to creating quantum programs of arbitrary size and complexity. The approach is based on the true abstraction of the problem. The quantum prog…