551 citations · 558 across the 5 of their papers we have counts for
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Python in the front, party in the Backline: compiling quantum workloads across CPUs, GPUs, and FPGAs
Joseph K. L. Lee, Mehrdad Malekmohammadi, Hong-Sheng Zheng +10
Moving from quantum research and development to production-grade, fault-tolerant quantum workload execution remains one of the most significant challenges facing quantum platform b…
FPGA-based feedback control of quantum optics experiments with the open source software package PyRPL
Leonhard Neuhaus, Michaël Croquette, Rémi Metzdorff +8
We present PyRPL, an open source software package that allows the implementation of automatic digital feedback controllers for quantum optics experiments on commercially available,…
Laser cooling of a Planck mass object close to the quantum ground state
Leonhard Neuhaus, Remi Metzdorff, Salim Zerkani +13
Quantum mechanics has so far not been tested for mechanical objects at the scale of the Planck mass . We present an experiment where a 1 m…
Mitigating linear optics imperfections via port allocation and compilation
Shreya P. Kumar, Leonhard Neuhaus, Lukas G. Helt +4
Linear optics is a promising route to building quantum technologies that operate at room temperature and can be manufactured scalably on integrated photonic platforms. However, sca…
Quantum circuits with many photons on a programmable nanophotonic chip
J. M. Arrazola, V. Bergholm, K. Brádler +36
Growing interest in quantum computing for practical applications has led to a surge in the availability of programmable machines for executing quantum algorithms. Present day photo…