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20242026
most citedOperational interpretation of the Stabilizer Entropy

6 citations · 6 across the 7 of their papers we have counts for

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quant-ph2026

Universal magic state concentration

Jacopo Rizzo, Lorenzo Leone

Magic plays a dual role in quantum computation: it promotes stabilizer dynamics from efficient classical simulability to universality, but it presents a central challenge for fault…

quant-ph2026

Fermionic entropy: an efficiently measurable strong monotone for non-Gaussianity

Lorenzo Leone, Lennart Bittel

Fermionic Gaussian states form a central class of classically tractable quantum states, while fermionic non-Gaussianity provides the resource required to go beyond free-fermion dyn…

quant-ph2026

The unbearable hardness of deciding about magic

Lorenzo Leone, Jens Eisert, Salvatore F. E. Oliviero

Identifying the boundary between classical and quantum computation is a central challenge in quantum information. In multi-qubit systems, entanglement and magic are the key resourc…

quant-ph2026

The computational two-way quantum capacity

Johannes Jakob Meyer, Jacopo Rizzo, Asad Raza +3

Quantum channel capacities are fundamental to quantum information theory. Their definition, however, does not limit the computational resources of sender and receiver. In this work…

quant-ph2025

Adaptively secure unitary designs with constant non-Clifford cost

Lennart Bittel, Lorenzo Leone

Randomness is a fundamental resource in quantum information, with crucial applications in cryptography, algorithms, and error correction. A central challenge is to construct unitar…

quant-ph2025

Computational relative entropy

Johannes Jakob Meyer, Asad Raza, Jacopo Rizzo +3

Our capacity to process information depends on the computational power at our disposal. Information theory captures our ability to distinguish states or communicate messages when i…