论文标题

部分可观测时空混沌系统的无模型预测

Superconducting qubits as musical synthesizers for live performance

论文作者

Topel, Spencer, Serniak, Kyle, Burkhart, Luke, Carle, Florian

论文摘要

在2019年耶鲁量子研究所的长达一年艺术居留式的框架中,艺术家和技术专家Spencer Topel以及量子物理学家Kyle Serniak和Luke Burkhart合作创作了量子声音,创建了有史以来首次创建的音乐,并直接从超大型量子设备的测量值中进行。使用模拟和数字信号处理的超声处理技术,该团队将GHz频率信号从稀释冰箱内部的实验转换为可听见的声音。该项目是在2019年6月14日在康涅狄格州纽黑文的国际艺术与思想节上现场直播的,是本章中描述的合成方法的结构化即兴演奏。在研究与艺术之间的界面上,量子声音代表了对量子领域产生声音反射的认真尝试。

In the frame of a year-long artistic residency at the Yale Quantum Institute in 2019, artist and technologist Spencer Topel and quantum physicists Kyle Serniak and Luke Burkhart collaborated to create Quantum Sound, the first-ever music created and performed directly from measurements of superconducting quantum devices. Using analog- and digital-signal-processing sonification techniques, the team transformed GHz-frequency signals from experiments inside dilution refrigerators into audible sounds. The project was performed live at the International Festival of Arts and Ideas in New Haven, Connecticut on June 14, 2019 as a structured improvisation using the synthesis methods described in this chapter. At the interface between research and art, Quantum Sound represents an earnest attempt to produce a sonic reflection of the quantum realm.

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