RESEARCH FOR THE POSSIBILITY ON DETECTING COSMIC RAY PARTICLES BY ACOUSTIC WAY

  • The exploring results of the possibility on detecting cosmic ray particles by acoustic way are reported. It shows that the ultrasonic background noise is very complicated and there are some individual and transient ultrasonic signals in the natural wide water. The mechanism producing these signals may be the sound radiation of the microbubbles in water. There is no evidence for the possible correlation between these signals and cosmic ray particles. The threshold energy of acoustic detection of EAS core is above 3﹒1016eV at sealevel and the threshold energy of acoustic detection of the local showers produced by cosmic ray particles is above 1014eV
  • [1] V.D.Volovik et al,14th ICRC,8(1975),3096.[2] Proceedings of the 1976 DUMAND Summer Warkshop p523,Proceedings of the 1979 DUMAND Summer Workshop p 128.[3] V.D Volovik G F Popov,15th ICRC 9(1977)37.[4] W. V. Jones 15th ICRC 6(1977),271.[5] A Roberts, AD-A048061 December 1977.[6] S Hanish AD-A050563 May 1978.[7] W L Barrett,Science,202(1978)749.[8] L Sulak et al,NIM,161(1979)203.[9] V J Stenger et al,"Status Report on the Barking Sands Project"1977.[10] T Kaneko et al.17th ICRC 11(1981)426;18th ICRC 11(1983)428.[11] 姜印琳等,科学通报,25(1980), 347.[12] D. Ross,水下噪声原理,(中译本)(1983) p.78, p.277.[13] L. D. Rozenberg "High-Intensity Ultrasonic Field" p. 279.[14] W. Hentschel and W. Lauterborn, Applied Scientific Research,38(1982),225.[15] D. Stette and F. Wangerlingh, Phys Rev 125 (1962), 409.[16] D. Stette and F. WangerIingh J, Acoust. Soc. Am, 41(1967),1074.
  • [1] V.D.Volovik et al,14th ICRC,8(1975),3096.[2] Proceedings of the 1976 DUMAND Summer Warkshop p523,Proceedings of the 1979 DUMAND Summer Workshop p 128.[3] V.D Volovik G F Popov,15th ICRC 9(1977)37.[4] W. V. Jones 15th ICRC 6(1977),271.[5] A Roberts, AD-A048061 December 1977.[6] S Hanish AD-A050563 May 1978.[7] W L Barrett,Science,202(1978)749.[8] L Sulak et al,NIM,161(1979)203.[9] V J Stenger et al,"Status Report on the Barking Sands Project"1977.[10] T Kaneko et al.17th ICRC 11(1981)426;18th ICRC 11(1983)428.[11] 姜印琳等,科学通报,25(1980), 347.[12] D. Ross,水下噪声原理,(中译本)(1983) p.78, p.277.[13] L. D. Rozenberg "High-Intensity Ultrasonic Field" p. 279.[14] W. Hentschel and W. Lauterborn, Applied Scientific Research,38(1982),225.[15] D. Stette and F. Wangerlingh, Phys Rev 125 (1962), 409.[16] D. Stette and F. WangerIingh J, Acoust. Soc. Am, 41(1967),1074.
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JIANG Yin-Lin, YUAN Yu-Kui, LI Yan-Guo, CHEN Duan-Bao, ZHENG Rong-Ting and SONG Jian-Ning. RESEARCH FOR THE POSSIBILITY ON DETECTING COSMIC RAY PARTICLES BY ACOUSTIC WAY[J]. Chinese Physics C, 1986, 10(1): 9-14.
JIANG Yin-Lin, YUAN Yu-Kui, LI Yan-Guo, CHEN Duan-Bao, ZHENG Rong-Ting and SONG Jian-Ning. RESEARCH FOR THE POSSIBILITY ON DETECTING COSMIC RAY PARTICLES BY ACOUSTIC WAY[J]. Chinese Physics C, 1986, 10(1): 9-14. shu
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Revised: 1900-01-01
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RESEARCH FOR THE POSSIBILITY ON DETECTING COSMIC RAY PARTICLES BY ACOUSTIC WAY

Abstract: The exploring results of the possibility on detecting cosmic ray particles by acoustic way are reported. It shows that the ultrasonic background noise is very complicated and there are some individual and transient ultrasonic signals in the natural wide water. The mechanism producing these signals may be the sound radiation of the microbubbles in water. There is no evidence for the possible correlation between these signals and cosmic ray particles. The threshold energy of acoustic detection of EAS core is above 3﹒1016eV at sealevel and the threshold energy of acoustic detection of the local showers produced by cosmic ray particles is above 1014eV

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