Understanding the structure of multi-qubit quantum states is essential for both quantum information research and education, yet intuitive visualization beyond the single-qubit Bloch sphere remains cha...
We systematically investigate the interplay between materials engineering, quantum transport, and low-frequency charge noise in silicon metal–oxide–semiconductor (SiMOS) quantum devices. By combining ...
Biological radical-pair systems operate at decoherence rates γeff = 3.25–4.55, far exceeding the entanglement-breaking threshold γc ≈ 0.3 (channel-model-dependent). Standard quantum error correction p...
This study presents the design and analysis of a specialized RF/MW circuit named the Quantum Non-classicality Enhancing Circuit, specifically developed for quantum applications. The primary objective ...
Quantum key distribution (QKD) introduces a fun- damentally different paradigm for secure communication by leveraging the physical laws of quantum mechanics rather than computational assumptions. This...
Qudits, the multi-level generalization of qubits, provide a natural extension of the binary paradigm in quantum computation and offer new opportunities to enhance algorithmic performance. Beyond their...
We benchmark five microscopic cuprate superconductivity theories against ten experimental constraints using continuous figures of merit $f_i\in[0,1]$ with explicit acceptance windows. At mean-field l...
We present an exact, rigorous decomposition of the intrinsic anomalous Hall conductiv ity (AHC) in three-dimensional topological nodal-line semimetals with broken time-reversal symmetry. The total AHC...
Sarcasm detection is a challenging task in Natural Language Processing (NLP) due to its reliance on subtle and implicit linguistic cues that are often not explicitly expressed in text. Designing model...
Miniaturized quantum light sources that operate directly in optical fibers are an attractive platform for optical quantum technologies. However, most miniaturized spontaneous parametric downconversion...
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