activity
20242026
collaborators

5 papers

quant-ph2026

Asymmetric quantum error correction efficiently tackles application-specific noise effects

Abhishek Yadav, Peter K. Schuhmacher, Michael Epping

Noise is a major challenge for current quantum computers. It can be broadly categorized into bit-flip and phase-flip errors. These two types do not necessarily affect the executed…

quant-ph2026

Hard-core Bosons in Action: Applications to Quantum Circuits

David Emmanuel-Costa, Michael Epping

The use of algebraic frameworks based on complex Clifford algebras for the representation and simulation of quantum circuits has been discussed in the literature. Recently, an alte…

quant-ph2025

Sublinear Classical-to-Quantum Data Encoding using -Toffoli Gates

Vittorio Pagni, Gary Schmiedinghoff, Kevin Lively +2

Quantum state preparation, also known as encoding or embedding, is a crucial initial step in many quantum algorithms and often constrains theoretical quantum speedup in fields such…

quant-ph2025

Fast Quantum Amplitude Encoding of Typical Classical Data

Vittorio Pagni, Sigurd Huber, Michael Epping +1

We present an improved version of a quantum amplitude encoding scheme that encodes the entries of a unit classical vector into the amplitudes of a quantu…

quant-ph2024

Quantum Software Ecosystem Design

Achim Basermann, Michael Epping, Benedikt Fauseweh +7

The rapid advancements in quantum computing necessitate a scientific and rigorous approach to the construction of a corresponding software ecosystem, a topic underexplored and prim…