11 papers · ranked by Valyu relevance
Joshua Viszlai, Satvik Maurya, Swamit Tannu, Margaret Martonosi + 1 more
Fault-Tolerant Quantum Computing (FTQC) relies on Quantum Error Correction (QEC) codes to reach error rates necessary for large scale quantum applications. At a physical level, QEC codes perform parity checks on data qubits, producing syndrome information, through Syndrome Measurement (SM) circuits. These circuits…
Peter Shanahan, Diego Ruiz
Biased-noise qubits, in which one type of error (e.g. X- and Y -type errors) is significantly suppressed relative to the other (e.g. Z-type errors), can significantly reduce the overhead of quantum error correction. Codes such as the rectangular surface code or XZZX code substantially reduce the qubit overhead under…
Diego Forlivesi, Lorenzo Valentini, Marco Chiani
Reliable quantum computation requires fault-tolerant protocols to prevent errors from propagating during syndrome extraction in quantum error correction. We present a novel fault-tolerant syndrome extraction technique for CSS codes, which we refer to as the cut-cat state scheme. While each ancilla qubit interacts…
Runjiang Bi, Kathleen Chang, Shruti Puri
Remarkable technical progress has made high-rate, high-distance, quantum low-density parity-check codes (QLDPC) promising candidates for scalable quantum computing. However, it is hard to design low-depth syndrome extraction circuits that do not spread errors from ancilla qubits to multiple data qubits, also known as…
Blaž Kociper, Alja Nike Kastrin, Katarina Miš, Pablo M Garcia-Roves + 10 more
Despite peer review, hundreds of biomedical articles contain errors due to identical abbreviations that refer to different proteins. This includes PDK1, denoting both pyruvate dehydrogenase kinase 1 and 3-phosphoinositide-dependent protein kinase 1. Our analysis shows that one-out-of-five articles with the term PDK1 on…
Authors not listed
This research investigates predicting the Highest Occupied Molecular Orbital and the Lowest Unoccupied Molecular Orbital (HOMO-LUMO; short HL) gap of natural compounds, a crucial property for understanding molecular electronic behavior relevant to cheminformatics and materials science. To address the high computational…
Christopher D. Wallbridge, Erwin Jose Lopez Pulgarin
This position paper looks briefly at the way we attempt to program robotic AI systems. Many AI systems are based on the idea of trying to improve the performance of one individual system to beyond so-called human baselines. However, these systems often look at one shot and one-way decisions, whereas the real world is…
Authors not listed
Bayesian optimization (BO) has become increasingly important for experimental optimization across scientific domains, yet implementing BO pipelines requires significant programming expertise and familiarity with specialized frameworks. This creates a barrier for domain experts who could benefit from BO but lack the…
Shiyang Liu
Understanding the challenges inherent in Chinese-Spanish sight translation for undergraduate students is essential for enhancing their interpretation ability and accuracy. However, sight translation errors have rarely been studied, especially for Chinese-Spanish language pair. This study builds a corpus of Chinese…
Yajin Zhuang, Liwen Chen, Wei Lun Wong
Errors, as linguistic manifestations of cognitive challenges in interpreting, have attracted considerable attention in the fields of teaching, practice, and assessment. This paper examines the nature of interpreting errors among Chinese EFL (English as a Foreign Language) learners and explores their relationship with…
Aeverie E. R. Heuchan, Ruban Rex Peter Durairaj, Alys N. Aston, Emma L. Randall + 6 more
Expanded repeat disorders remain without a disease modifying treatment. Some of the most important modifiers of disease severity include inherited repeat size, their somatic mosaicism, and whether they contain interruptions. Targeted sequencing approaches are becoming the gold standard on how these parameters are…