Location via proxy:   [ UP ]  
[Report a bug]   [Manage cookies]                
×
Apr 4, 2020 · Scalable pseudorandom states require randomizing the amplitudes of the quantum state, and not just the phase as in all prior works.
Aug 10, 2020 · Scalable pseudorandom states require randomizing the amplitudes of the quantum state, and not just the phase as in all prior works.
Scalable Pseudorandom Quantum States. Authors: Zvika Brakerski , Weizmann Institute of Science; Omri Shmueli , Tel Aviv University. Download: DOI: 10.1007/978 ...
Efficiently sampling a quantum state that is hard to distinguish from a truly random quantum state is an elementary task in quantum information theory that ...
Abstract. Efficiently sampling a quantum state that is hard to distin- guish from a truly random quantum state is an elementary task in quan-.
People also ask
We resolve the problem in this work, showing that any quantum-secure one-way function implies scalable PRS. We follow the paradigm of first showing a ...
Efficiently sampling a quantum state that is hard to distinguish from a truly random quantum state is an elementary task in quantum information theory that ...
Jun 14, 2024 · This article focuses on the development of scalable and qubit-efficient algorithms for computing power functions of random quantum states.
Scalable Pseudorandom Quantum States. https://doi.org/10.1007/978-3-030-56880 ... Brakerski, Z., Shmueli, O.: (Pseudo) random quantum states with binary phase.