{"created":"2021-03-01T06:17:02.771599+00:00","id":505,"links":{},"metadata":{"_buckets":{"deposit":"9a581bcd-ec55-4662-aae7-f563f460dac2"},"_deposit":{"id":"505","owners":[],"pid":{"revision_id":0,"type":"depid","value":"505"},"status":"published"},"_oai":{"id":"oai:repository.dl.itc.u-tokyo.ac.jp:00000505","sets":["75:121:122","9:10:11"]},"item_2_biblio_info_7":{"attribute_name":"書誌情報","attribute_value_mlt":[{"bibliographicIssueDates":{"bibliographicIssueDate":"1999-02","bibliographicIssueDateType":"Issued"},"bibliographicIssueNumber":"3","bibliographicPageEnd":"412","bibliographicPageStart":"409","bibliographicVolumeNumber":"26","bibliographic_titles":[{"bibliographic_title":"Geophysical research letters"}]}]},"item_2_description_5":{"attribute_name":"抄録","attribute_value_mlt":[{"subitem_description":"The self‐organization hypothesis of the magnetopause Kelvin‐Helmholtz (K‐H) instability is tested against observations by two‐dimensional (2‐D) magnetohydrodynamic (MHD) simulations for two different initial seed perturbations. The linear relationships are obtained by the simulations between the period of the magnetopause oscillation caused by the K‐H instability and the distance along the magnetopause from the subsolar point. The comparison of the linear relationships with that obtained from reported observations of the magnetopause oscillations gives a reasonable thickness of the velocity shear layer near the subsolar point of 1570km‐3010km and a reasonable average magnetosheath flow speed along the magnetopause of 399km/sec‐766km/sec. This suggests that the self‐organization of the magnetopause K‐H instability, i.e., the successive pairings of vortices, really occurs along the magnetopause. The present comparison provides a useful method to determine the thickness of the velocity shear layer near the subsolar point as an inverse problem.","subitem_description_type":"Abstract"}]},"item_2_publisher_20":{"attribute_name":"出版者","attribute_value_mlt":[{"subitem_publisher":"American Geophysical Union"}]},"item_2_relation_11":{"attribute_name":"DOI","attribute_value_mlt":[{"subitem_relation_type_id":{"subitem_relation_type_id_text":"info:doi/10.1029/1998GL900300","subitem_relation_type_select":"DOI"}}]},"item_2_rights_12":{"attribute_name":"権利","attribute_value_mlt":[{"subitem_rights":"copyright 1999 by the American Geophysical Union"}]},"item_2_source_id_10":{"attribute_name":"書誌レコードID","attribute_value_mlt":[{"subitem_source_identifier":"AA00657102","subitem_source_identifier_type":"NCID"}]},"item_2_source_id_8":{"attribute_name":"ISSN","attribute_value_mlt":[{"subitem_source_identifier":"00948276","subitem_source_identifier_type":"ISSN"}]},"item_2_subject_15":{"attribute_name":"日本十進分類法","attribute_value_mlt":[{"subitem_subject":"450","subitem_subject_scheme":"NDC"}]},"item_2_text_4":{"attribute_name":"著者所属","attribute_value_mlt":[{"subitem_text_value":"Department of Earth and Planetary Physics, University of Tokyo"}]},"item_creator":{"attribute_name":"著者","attribute_type":"creator","attribute_value_mlt":[{"creatorNames":[{"creatorName":"Miura, Akira"}],"nameIdentifiers":[{"nameIdentifier":"1718","nameIdentifierScheme":"WEKO"}]}]},"item_files":{"attribute_name":"ファイル情報","attribute_type":"file","attribute_value_mlt":[{"accessrole":"open_date","date":[{"dateType":"Available","dateValue":"2017-05-30"}],"displaytype":"detail","filename":"GRL_026_003_00409.pdf","filesize":[{"value":"380.5 kB"}],"format":"application/pdf","licensetype":"license_note","mimetype":"application/pdf","url":{"label":"GRL_026_003_00409.pdf","url":"https://repository.dl.itc.u-tokyo.ac.jp/record/505/files/GRL_026_003_00409.pdf"},"version_id":"908c5d6a-7ed1-4ca6-9fcc-64438b91fcdb"}]},"item_language":{"attribute_name":"言語","attribute_value_mlt":[{"subitem_language":"eng"}]},"item_resource_type":{"attribute_name":"資源タイプ","attribute_value_mlt":[{"resourcetype":"journal article","resourceuri":"http://purl.org/coar/resource_type/c_6501"}]},"item_title":"A quantitative test of the self‐organization hypothesis of the magnetopause Kelvin‐Helmholtz instability as an inverse problem","item_titles":{"attribute_name":"タイトル","attribute_value_mlt":[{"subitem_title":"A quantitative test of the self‐organization hypothesis of the magnetopause Kelvin‐Helmholtz instability as an inverse problem"}]},"item_type_id":"2","owner":"1","path":["11","122"],"pubdate":{"attribute_name":"公開日","attribute_value":"2010-11-18"},"publish_date":"2010-11-18","publish_status":"0","recid":"505","relation_version_is_last":true,"title":["A quantitative test of the self‐organization hypothesis of the magnetopause Kelvin‐Helmholtz instability as an inverse problem"],"weko_creator_id":"1","weko_shared_id":null},"updated":"2022-12-19T03:41:31.004987+00:00"}