HR: 1340h
AN: S13A-1052 [Abstracts]
TI: Regional seismic observation of the October 9, 2006 underground nuclear explosion in North Korea and its interpretation
AU: * Hong, T
EM: tkhong@yonsei.ac.kr
AF: Yonsei University, Department of Earth System Sciences, Shinchon-dong Seodaemun-gu,
Seoul, 120-749, Korea, Republic of
AU: Baag, C
AF: Seoul National University, School of Earth and Environmental Sciences, Seoul, 151-742,
Korea, Republic of
AU: Choi, H
AF: Korea Institute of Nuclear Safety, Yuseong-gu, Daejeon, 305-600, Korea, Republic of
AU: Sheen, D
AF: Korea Meteorological Administration, National Institute of Meteorological Research, Seoul,
156-720, Korea, Republic of
AB:
The recent underground nuclear explosion (UNE) in North
Korea on October 9, 2006 leaves many issues to be
resolved. One outstanding question is how big the event
was. Another question is why the Lg wave, which is
typically the most prominent regional phase even for
UNEs, is not observed much in regional observations at
South Korea. This Lg phase is analyzed importantly both
for constraints to the size of detonation and for the
discrimination of nuclear explosion from natural
earthquake. We find that the Lg from the nuclear
explosion was significantly dissipated by energy leakage
into the mantle due to the variation in crustal
structures along the ray paths. A part of the leaked
energy develops in a form of mantle-lid waves, causing
large energy addition to the Sn. These features are
confirmed with numerical waveform modelings and
comparisons with waveforms from natural earthquakes. The
discriminative Lg attenuation dependent on ray path
causes underestimation of the magnitude. We redetermine
the magnitude of the UNE from regional records with pure
continental ray paths. The body-wave magnitude of the UNE
is estimated to be 4.0±0.2.
DE: 7203 Body waves
DE: 7205 Continental crust (1219)
DE: 7219 Seismic monitoring and test-ban treaty verification
SC: Seismology [S]
MN: 2007 Fall Meeting