Benjamin Tiller
Papers
1
Total Citations
34
H-Index
1
About
Benjamin Tiller is a researcher at the forefront of acoustic metamaterials, specializing in the design and fabrication of subwavelength sound-absorbing structures. His work centers on breaking the mass-density law to achieve high-performance noise attenuation in compact forms. In his highly cited 2018 paper, Tiller demonstrated that small-scale 3-D printed acoustic metamaterials based on Helmholtz resonators can achieve sound absorption of up to 30 dB, a significant breakthrough for applications where space is limited. This work has garnered 34 citations and established a foundation for integrating additive manufacturing with advanced acoustic engineering. Tiller’s contributions are pivotal for developing lightweight, tunable noise control solutions in aerospace, automotive, and architectural acoustics. His research not only advances fundamental understanding of resonant absorption mechanisms but also offers practical pathways for fabricating efficient, small-form-factor soundproofing materials. By merging metamaterial theory with accessible 3-D printing techniques, Tiller is shaping the next generation of acoustic devices.
Research Focus
Key Achievements
Top Papers
- 1