Statistical Survey of the Terrestrial Bow Shock Observed by the Cluster Spacecraft
O. Krupařová, Vratislav Krupař, Jana Šafránková, Zdeněk Němeček, M. Maksimović, O. Santolı́k, J. Souček, F. Němec, J. Měrka
Abstract
Open-access reader
O. Krupařová, Vratislav Krupař, Jana Šafránková, Zdeněk Němeček, M. Maksimović, O. Santolı́k, J. Souček, F. Němec, J. Měrka
Abstract
Open-access reader
Abstract The terrestrial bow shock provides us with a unique opportunity to extensively investigate properties of collisionless shocks using in situ measurements under a wide range of upstream conditions. Here we report a statistical study of 529 terrestrial bow shock crossings observed between years 2001 and 2013 by the four Cluster spacecraft. By applying a simple timing method to multipoint measurements, we are able to investigate their characteristic spatiotemporal features. We have found a significant correlation between the speed of the bow shock motion and the solar wind speed. We have also compared obtained speeds with time derivatives of locations predicted by a three‐dimensional bow shock model. Finally, we provide a list of bow shock crossings for possible further investigation by the scientific community.
OpenAlex reports 31 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract The terrestrial bow shock provides us with a unique opportunity to extensively investigate properties of collisionless shocks using in situ measurements under a wide range of upstream conditions. Here we report a statistical study of 529 terrestrial bow shock crossings observed between years 2001 and 2013 by the four Cluster spacecraft. By applying a simple timing method to multipoint measurements, we are able to investigate their characteristic spatiotemporal features. We have found a significant correlation between the speed of the bow shock motion and the solar wind speed. We have also compared obtained speeds with time derivatives of locations predicted by a three‐dimensional bow shock model. Finally, we provide a list of bow shock crossings for possible further investigation by the scientific community.
Key concepts: Bow shock (aerodynamics), Spacecraft, Shock (circulatory), Aerospace engineering, Range (aeronautics), Cluster (spacecraft), Bow wave, Physics