Systematic realization of double-zero-index phononic crystals with hard inclusions
Abstract A systematic process is described to realize double-zero-index phononic crystals with Dirac-like points experimentally. This type of crystal normally has softer inclusion material than its surroundings medium, allowing mapping into a zero-index medium under certain conditions but also makin...
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doaj-c368c39760b442dfaf9ff0bb5d1da14a2020-12-08T05:10:38ZengNature Publishing GroupScientific Reports2045-23222018-05-01811910.1038/s41598-018-25696-ySystematic realization of double-zero-index phononic crystals with hard inclusionsJaeyub Hyun0Wonjae Choi1Semyung Wang2Choon-su Park3Miso Kim4School of Mechatronics, Gwangju Institute of Science and Technology (GIST)Center for Safety Measurement, Korea Research Institute of Standards and Science (KRISS)School of Mechatronics, Gwangju Institute of Science and Technology (GIST)Center for Safety Measurement, Korea Research Institute of Standards and Science (KRISS)Center for Safety Measurement, Korea Research Institute of Standards and Science (KRISS)Abstract A systematic process is described to realize double-zero-index phononic crystals with Dirac-like points experimentally. This type of crystal normally has softer inclusion material than its surroundings medium, allowing mapping into a zero-index medium under certain conditions but also making experimental implementation difficult. On the other hand, realizing phononic crystals with hard inclusions can be experimentally more feasible, but the mapping conditions cannot be directly applied to hard-inclusion crystals such that mapping is not systematically guaranteed in these cases. Moreover, even if such crystals become realizable, there is a lack of a systematic design process which can be used to optimize or to redesign the crystals, which largely limits their potential applications. In this paper, we discover the essential conditions for realizing phononic crystals with hard inclusions and propose a methodology for the systematic design of these crystals using homogenization based on the effective medium theory. Using the proposed method, a double-zero-index phononic crystal with hard inclusions is optimized and experimentally realized for an underwater ultrasonic wave collimator.https://doi.org/10.1038/s41598-018-25696-y |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jaeyub Hyun Wonjae Choi Semyung Wang Choon-su Park Miso Kim |
spellingShingle |
Jaeyub Hyun Wonjae Choi Semyung Wang Choon-su Park Miso Kim Systematic realization of double-zero-index phononic crystals with hard inclusions Scientific Reports |
author_facet |
Jaeyub Hyun Wonjae Choi Semyung Wang Choon-su Park Miso Kim |
author_sort |
Jaeyub Hyun |
title |
Systematic realization of double-zero-index phononic crystals with hard inclusions |
title_short |
Systematic realization of double-zero-index phononic crystals with hard inclusions |
title_full |
Systematic realization of double-zero-index phononic crystals with hard inclusions |
title_fullStr |
Systematic realization of double-zero-index phononic crystals with hard inclusions |
title_full_unstemmed |
Systematic realization of double-zero-index phononic crystals with hard inclusions |
title_sort |
systematic realization of double-zero-index phononic crystals with hard inclusions |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2018-05-01 |
description |
Abstract A systematic process is described to realize double-zero-index phononic crystals with Dirac-like points experimentally. This type of crystal normally has softer inclusion material than its surroundings medium, allowing mapping into a zero-index medium under certain conditions but also making experimental implementation difficult. On the other hand, realizing phononic crystals with hard inclusions can be experimentally more feasible, but the mapping conditions cannot be directly applied to hard-inclusion crystals such that mapping is not systematically guaranteed in these cases. Moreover, even if such crystals become realizable, there is a lack of a systematic design process which can be used to optimize or to redesign the crystals, which largely limits their potential applications. In this paper, we discover the essential conditions for realizing phononic crystals with hard inclusions and propose a methodology for the systematic design of these crystals using homogenization based on the effective medium theory. Using the proposed method, a double-zero-index phononic crystal with hard inclusions is optimized and experimentally realized for an underwater ultrasonic wave collimator. |
url |
https://doi.org/10.1038/s41598-018-25696-y |
work_keys_str_mv |
AT jaeyubhyun systematicrealizationofdoublezeroindexphononiccrystalswithhardinclusions AT wonjaechoi systematicrealizationofdoublezeroindexphononiccrystalswithhardinclusions AT semyungwang systematicrealizationofdoublezeroindexphononiccrystalswithhardinclusions AT choonsupark systematicrealizationofdoublezeroindexphononiccrystalswithhardinclusions AT misokim systematicrealizationofdoublezeroindexphononiccrystalswithhardinclusions |
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