This paper introduces a novel acoustic metamaterial design, the Phased Gradient Ultra Open Metamaterial (PGUOM), which achieves effective broadband sound insulation while maintaining a high degree of ventilation.
This paper presents a reconfigurable acoustic metalens, constructed from 3D-printed origami units, capable of dynamically adjusting its focal point for precise sound manipulation.
本文提出了一種利用混合型幾何相位超原子(HGPM)對中兩個模式轉換路徑之間的干涉來連續調節聲波幅度的策略,並通過仿真和實驗驗證了該策略的可行性。
이 논문에서는 두 개의 동일한 하이브리드형 기하학적 위상 메타원자(HGPM)로 구성된 메타원자 쌍을 사용하여 음향 구조물에서 간섭 현상을 통해 음향파의 진폭을 지속적으로 제어하는 방법을 제안합니다.
This paper presents a novel method for continuous acoustic wave amplitude modulation by leveraging the interference phenomenon between two mode-conversion paths in a hybrid geometric-phase meta-atom (HGPM) pair, achieving nearly 100% modulation depth by simply adjusting the relative orientation angle of the meta-atoms.
The author proposes a new mathematical model for reverberation in diffuse sound fields that accounts for the temporal energy distribution in each reflection order. The model is consistent with the author's previously proposed revised reverberation theory and demonstrates the importance of the concept of "reverberation of direct sound" for the entire reverberation process.
The proposed Discrete Complex Image Source Method (DCISM) can accurately estimate the sound absorption coefficient of materials, including finite and non-locally reacting samples, by mapping the measured sound pressure to a distribution of monopoles along a complex line.
Analytical study of acoustic wave diffraction using the Wiener-Hopf method for multiple semi-infinite arrays.
Acoustic velocity vectors are crucial for sound localization at low frequencies. This paper introduces a method to reproduce these vectors in a circular listening area, enhancing accuracy and allowing listener movement.
Binaural room impulse responses (BRIRs) are crucial for various audio applications, and a high-resolution dataset can significantly impact BRIR modeling and machine learning-based tasks.