We report evidence of magnetic reconnection in the transition region of the Earth's bow shock when the angle between the shock normal and the immediate upstream magnetic field is 65°. An ion‐skin‐depth‐scale current sheet exhibits the Hall current and field pattern, electron outflow jet, and enhanced energy conversion rate through the nonideal electric field, all consistent with a reconnection diffusion region close to the X‐line. In the diffusion region, electrons are modulated by electromagnetic waves. An ion exhaust with energized field‐aligned ions and electron parallel heating are observed in the same shock transition region. The energized ions are more separated from the inflowing ions in velocity above the current sheet than below, p...
Magnetic reconnection in current sheets is a magnetic-to-particle energy conversion process that is ...
The quasi-parallel bow shock creates highly turbulent conditions favourable for magnetic reconnectio...
In this paper we use the full armament of the MMS (Magnetospheric Multiscale) spacecraft to study ma...
Using observations of Earth's bow shock by the Magnetospheric Multiscale mission, we show for the fi...
Recent observations by Magnetospheric Multiscale (MMS) have demonstrated that magnetic reconnection ...
Turbulent magnetic reconnection in a quasi-parallel shock under parameters relevant to the Earth's b...
In the Earth’s quasi-parallel bow shock, shock-driven turbulence generates current sheets, and MMS h...
We have conducted a comprehensive survey of burst mode observations of Earth's bow shock by the Magn...
We have conducted a comprehensive survey of burst mode observations of Earth's bow shock by the Magn...
Magnetic reconnection is a fundamental process of energy conversion in plasmas between electromagnet...
Using observations of Earth's bow shock by the Magnetospheric Multiscale mission, we show for the fi...
International audienceMagnetic reconnection in current sheets is a magnetic-to-particle energy conve...
We present MMS observations during two dayside magnetopause crossings under hitherto unexamined cond...
Magnetic reconnection in a quasi‐parallel bow shock is investigated with two‐dimensional local parti...
International audienceUsing observations of Earth's bow shock by the Magnetospheric Multiscale missi...
Magnetic reconnection in current sheets is a magnetic-to-particle energy conversion process that is ...
The quasi-parallel bow shock creates highly turbulent conditions favourable for magnetic reconnectio...
In this paper we use the full armament of the MMS (Magnetospheric Multiscale) spacecraft to study ma...
Using observations of Earth's bow shock by the Magnetospheric Multiscale mission, we show for the fi...
Recent observations by Magnetospheric Multiscale (MMS) have demonstrated that magnetic reconnection ...
Turbulent magnetic reconnection in a quasi-parallel shock under parameters relevant to the Earth's b...
In the Earth’s quasi-parallel bow shock, shock-driven turbulence generates current sheets, and MMS h...
We have conducted a comprehensive survey of burst mode observations of Earth's bow shock by the Magn...
We have conducted a comprehensive survey of burst mode observations of Earth's bow shock by the Magn...
Magnetic reconnection is a fundamental process of energy conversion in plasmas between electromagnet...
Using observations of Earth's bow shock by the Magnetospheric Multiscale mission, we show for the fi...
International audienceMagnetic reconnection in current sheets is a magnetic-to-particle energy conve...
We present MMS observations during two dayside magnetopause crossings under hitherto unexamined cond...
Magnetic reconnection in a quasi‐parallel bow shock is investigated with two‐dimensional local parti...
International audienceUsing observations of Earth's bow shock by the Magnetospheric Multiscale missi...
Magnetic reconnection in current sheets is a magnetic-to-particle energy conversion process that is ...
The quasi-parallel bow shock creates highly turbulent conditions favourable for magnetic reconnectio...
In this paper we use the full armament of the MMS (Magnetospheric Multiscale) spacecraft to study ma...