US 1612584A
· Hunter et al.
· 1926
[cited by applicant]
US 1740805A
· Henry
· 1929
[cited by applicant]
US 2317246A
· Bergmann
· 1943
[cited by applicant]
US 2359365A
· Katcher
· 1944
[cited by applicant]
US 2911055A
· McDonald
· 1959
[cited by applicant]
US 3113635A
· Allen et al.
· 1963
[cited by applicant]
US 3700069A
· Rausch et al.
· 1972
[cited by applicant]
US 3805495A
· Steel
· 1974
[cited by applicant]
US 3888331A
· Wang
· 1975
[cited by applicant]
US 3913703A
· Parker
· 1975
[cited by applicant]
US 3963092A
· Soares
· 1976
[cited by applicant]
US 4050539A
· Kashiwara et al.
· 1977
[cited by applicant]
US 4683978A
· Venter
· 1987
[cited by applicant]
US 5152366A
· Reitz
· 1992
[cited by applicant]
US 5245140A
· Wu
· 1993
[cited by applicant]
US 5783780A
· Watanabe et al.
· 1998
[cited by applicant]
US 6364055B1
· Purdy
· 2002
[cited by applicant]
US 6772858B2
· Trochon
· 2004
[cited by applicant]
US 7117973B2
· Graefenstein
· 2006
[cited by applicant]
US 7661509B2
· Dadd
· 2010
[cited by applicant]
US 7726444B1
· Laughlin
· 2010
[cited by applicant]
US 9500108B2
· Brown
· 2016
[cited by applicant]
US 20010015301A1
· Kesselring
· 2001
[cited by applicant]
CN 203594488U
· 2014
[cited by applicant]
CN 106481385A
· 2017
[cited by applicant]
DE 3401210A1
· 1985
[cited by applicant]
DE 19543967A1
· 1997
[cited by applicant]
DE 10328144A1
· 2005
[cited by applicant]
EP 1070903A1
· 2001
[cited by applicant]
FR 602160A
· 1926
[cited by applicant]
GB 460148A
· 1937
[cited by applicant]
GB 915295A
· 1963
[cited by applicant]
JP S5194538U
· 1976
[cited by applicant]
JP S57191409A
· 1982
[cited by applicant]
JP 2005513355A
· 2005
[cited by applicant]
JP 2008050989A
· 2008
[cited by applicant]
**Alfredson, R.J., et al., “The Radiation of Sound From An Engine Exhaust,” J. Sound Vib., vol. 13, Issue No. 4, pp. 389-408 (1970).
[cited by applicant]
Canadian Office Action for Canadian Patent Application No. 3,108,530 dated Dec. 15, 2023 (4 pages).
[cited by applicant]
**Chen, H., et al., “Acoustic cloaking in three dimensions using acoustic metamaterials,” American Institute of Physics, Applied Physics Letters vol. 91, pp. 183518-1 to 183518-3 (2007).
[cited by applicant]
**Chen, Z., et al., “An open-structure sound insulator against low-frequency and wide-band acoustic waves,” Applied Physics Express, vol. 8, pp. 107301-1 to 107301-4 (2015).
[cited by applicant]
**Chinese Office Action and Search Report for Application 2019800511991, dated Mar. 11, 2022, 13 pages.
[cited by applicant]
**Cummer, S.A., et al., “Scattering Theory Derivation of a 3D Acoustic Cloaking Shell,” Physical Review Letters, vol. 100, pp. 024301-1 to 024301-4 (2008).
[cited by applicant]
**Esfahlani, H., et al., “Generation of acoustic helical wavefronts using metasurtaces,” American Physical Society, Physical Review B, vol. 95, pp. 024312-1 to 024312-5 (2017).
[cited by applicant]
European Patent Office, Communication pursuant to Article 94(3) EPC for European Application No. 19843488.8, dated Nov. 29, 2023 (5 pages).
[cited by applicant]
**Extended European Search Report for Application No. 19843488.8, dated Mar. 30, 2022 (8 pages).
[cited by applicant]
**Fano, U., “Effects of Configuration Interaction on Intensities and Phase Shifts,” Physical Review, vol. 124, Issue No. 6, pp. 1866-1878 (Dec. 1961).
[cited by applicant]
**Fellay, A., et al., “Scattering of vibrational waves in perturbed quasi-one-dimensional multichannel waveguides,” The American Physical Society, Physical Review B, vol. 55, Issue No. 3, pp. 1707-1717 (Jan. 1997).
[cited by applicant]
**Feng, Q., et al., “Acoustic attenuation performance through a constricted duct improved by an annular resonator,” The Journal of the Acoustical Society of America, vol. 134, Issue No. 4, pp. ELMS to EL351 (Oct. 2013).
[cited by applicant]
**Garcia-Chocano, V.M., et al., “Broadband sound absorption by lattices of microperforated cylindrical shells,” Applied Physics Letters, vol. 101, pp. 184101-1 to 184101-4 (2012).
[cited by applicant]
**Ghaffarivardavagh, R., et al., “Horn-like space-coiling metamaterials toward simultaneous phase and amplitude modulation,” Nature Communications, vol. 9, Issue No. 1349, pp. 1-8 (2018).
[cited by applicant]
**Ghaffarivardavagh, R., et al., “Ultra-open acoustic metamaterial silencer based on Fano-like interference,” Physical Review B, vol. 99, pp. 024302-1-024302-10 (2019).
[cited by applicant]
**Goffaux, C., et al., “Evidence of Fano-Like Interference Phenomena in Locally Resonant Materials,” Physical Review Letters, vol. 88, Issue No. 22, pp. 225502-1 to 225502-4 (Jun. 2002).
[cited by applicant]
**Huang, L., “Broadband sound reflection by plates covering side-branch cavities in a duct,” The Journal of the Acoustical Society of America, vol. 119, No. 5, pp. 2628-2638 (May 2006).
[cited by applicant]
**Indian Patent Office, First Examination Report for Indian Patent Application No. 202117002665 dated Jul. 29, 2022 (7 pages).
[cited by applicant]
**International Search Report and Written Opinion for Application No. PCT/US2019/044957, mailed Nov. 1, 2019, 16 pages.
[cited by applicant]
**Japanese Patent Office, Notification of Reasons for Rejection, for Japanese Patent Application No. 2021-505838, dated Apr. 26, 2023, 18 pages.
[cited by applicant]
**Jung, J.W., et al., “Acoustic metamaterial panel for both fluid passage and broadband soundproofing in the audible frequency range,” Applied Physics Letters, vol. 112, pp. 041903-1 to 041903-5 (2018).
[cited by applicant]
**Kim, S.H., et al., “Air transparent soundproof window,” AIP Advances, vol. 4, pp. 117123-1 to 117123-8 (2014).
[cited by applicant]
**Lauchle, G.C., et al., “Active control of axial-flow fan noise,” The Journal of the Acoustical Society of America, vol. 101, Issue No. 1, pp. 341-349 (Jan. 1997).
[cited by applicant]
**Lee, J.W., et al., “Topology design of a reactive mufflers for enhancing their acoustic attenuation performance and flow characteristics simultaneously,” International Journal for Numerical Methods in Engineering, vol…
[cited by applicant]
**Li, Y., et al., “Experimental Realization of Full Control of Reflected Waves with Subwavelength Acoustic Metasurtaces,” Physical Review Applied, vol. 2, pp. 064002-1 to 064002-11 (2014).
[cited by applicant]
**Li, Y., et al., “Three-dimensional Ultrathin Planar Lenses by Acoustic Metamaterials,” Scientific Reports, vol. 4, Issue No. 6830, pp. 1-6 (2014).
[cited by applicant]
**Li, L.J., “Broadband compact acoustic absorber with high-efficiency ventilation performance,” Applied Physics Letters, vol. 113, pp. 103501-1 to 103501-5 (2018).
[cited by applicant]
**Lu, D., et al., “Hyperlenses and metalenses for far-field super-resolution imaging,” Nature Communications, vol. 3, 1205, pp. 1-9 (Nov. 2012).
[cited by applicant]
**Ma, G., et al., “Low-frequency narrow-band acoustic filter with large orifice,” Applied Physical Letters, vol. 103, pp. 311903-1 to 011903-4 (2013).
[cited by applicant]
**Niu, Y., et al., “Three dimensional visualizations of open fan noise fields,” Noise Control Engr. J., vol. 60, Issue No. 1, pp. 392-404 (Jul.-Aug. 2012).
[cited by applicant]
**Sainidou, R., et al., “Guided quasiguided elastic waves in phononic crystal slabs,” The American Physical Society, Physical Review B, vol. 73, pp. 184301-1 to 184301-7 (2006).
[cited by applicant]
**Selamet, A., et al., “Acoustic Attenuation Performance of Circular Expansion Chambers with Extended Inlet/Dutlet,” Journal of Sound and Vibration, vol. 223, Issue No. 2, pp. 197-212 (1999).
[cited by applicant]
**Sellen, N., et al., “Noise reduction in a flow duct: Implementation of a hybrid passive/active solution,” Journal of Sound and Vibration, vol. 297, pp. 492-511 (2006).
[cited by applicant]
**Shen, C., et al., “Acoustic metacages for sound shielding with steady air flow,” Journal of Applied Physics, vol. 123, pp. 124501-1 to 124501-7 (2018).
[cited by applicant]
**Stewart, G.W., “The Theory of the Herschel-Quincke Tube,” Physical Review, vol. 31, pp. 696-698 (Apr. 1928).
[cited by applicant]
**Wang, C., et al., “Realization of a broadband low-frequency plate silencer using sandwich plates,” Journal of Sound and Vibration, vol. 318, pp. 792-808 (2008).
[cited by applicant]
**Wu, X., et al., “High-efficiency ventilated metamaterial absorber at low frequency,” Applied Physics Letters, vol. 112, pp. 103505-1 to 103505-5 (2018).
[cited by applicant]
**Xie, Y., et al., “Wavefront modulation and subwavelength diffractive acoustics with an acoustic metasurface,” Nature Communications, vol. 5, 5553, pp. 1-5 (2014).
[cited by applicant]
**Zhu, J., et al., “A holey-structured metamaterial for acoustic deep-subwavelength imaging,” Nature Physics, vol. 7, pp. 52-55 (Jan. 2011).
[cited by applicant]
**Zhu, X., et al., “Implementation of dispersion-free slow acoustic wave propagation and phase engineering with helical-structured metamaterials,” Nature Communications, vol. 7, 11731, pp. 1-7 (2016).
[cited by applicant]