Optimize IAS
  • Home
  • About Us
  • Courses
    • Prelims Test Series
      • LAQSHYA 2026 Prelims Mentorship
    • Mains Mentorship
      • Arjuna 2026 Mains Mentorship
  • Portal Login
  • Home
  • About Us
  • Courses
    • Prelims Test Series
      • LAQSHYA 2026 Prelims Mentorship
    • Mains Mentorship
      • Arjuna 2026 Mains Mentorship
  • Portal Login

First evidence of Solitary waves or distinct electric field fluctuations in the Martian magnetosphere

  • January 20, 2023
  • Posted by: OptimizeIAS Team
  • Category: DPN Topics
No Comments

 

 

First evidence of Solitary waves or distinct electric field fluctuations in the Martian magnetosphere

Subject: Science and Technology

Section: Space technology

Context: Scientists have reported the first evidence of the presence of solitary waves or distinct electric field fluctuations in the Martian magnetosphere. The study of these waves is crucial as they directly control particle energization, plasma loss, transport, etc., through wave-particle interactions.

Concept:

  • Our Earth is a giant magnet, and its magnetic field protects us from high-speed charged particles that are continuously emitted from the Sun in the form of solar wind.
  • Unlike Earth, the planet Mars do not have any intrinsic magnetic field.
  • This allows the high-speed solar wind to interact directly with the Mars atmosphere, like an obstacle in flow. It has been suggested that even in a weak and thin magnetosphere as that of the Mars, one can observe frequent occurrences of solitary waves.
  • For the first time, a research team from the Indian Institute of Geomagnetism (IIG), an autonomous institute of the Department of Science and Technology (DST), has identified and reported the solitary waves in the Martian magnetosphere with the help of high-resolution electric field data recorded by Langmuir Probe and Waves instrument on the Mars Atmosphere and Volatile EvolutioN (MAVEN) spacecraft of NASA.
  • The magnetosphere is weak but highly dynamic and formed due to the direct interaction of solar winds with the Martian atmosphere.
  • Solitary waves are the distinct electric field fluctuations (bipolar or monopolar) that follow constant amplitude-phase relations.
  • Their shape and size are less affected during their propagation. The magnitude and duration of these pulses are found to be 1-25 milivolt/meter and 0.2–1.7 milliseconds, respectively. These pulses are dominantly seen in the dawn and afternoon-dusk sectors at an altitude of 1000–3500 km around the Mars.
  • The dominant occurrence of solitary waves in the dawn and dusk sector is still a mystery and needs further investigation. Through simulations, it is found that the spatial extent of these structures is very small (30-330 meters).
  • As these waves are known to be responsible for the plasma energization and its transport in Earth’s magnetosphere, the team is further exploring their role in the particle dynamics in the Martian magnetosphere and whether such waves play any role in the loss of atmospheric ions on the Mars.
First evidence of Solitary waves or distinct electric field fluctuations in the Martian magnetosphere Science and tech

Recent Posts

  • Daily Prelims Notes 23 March 2025 March 23, 2025
  • Challenges in Uploading Voting Data March 23, 2025
  • Fertilizers Committee Warns Against Under-Funding of Nutrient Subsidy Schemes March 23, 2025
  • Tavasya: The Fourth Krivak-Class Stealth Frigate Launched March 23, 2025
  • Indo-French Naval Exercise Varuna 2024 March 23, 2025
  • No Mismatch Between Circulating Influenza Strains and Vaccine Strains March 23, 2025
  • South Cascade Glacier March 22, 2025
  • Made-in-India Web Browser March 22, 2025
  • Charting a route for IORA under India’s chairship March 22, 2025
  • Mar-a-Lago Accord and dollar devaluation March 22, 2025

About

If IAS is your destination, begin your journey with Optimize IAS.

Hi There, I am Santosh I have the unique distinction of clearing all 6 UPSC CSE Prelims with huge margins.

I mastered the art of clearing UPSC CSE Prelims and in the process devised an unbeatable strategy to ace Prelims which many students struggle to do.

Contact us

moc.saiezimitpo@tcatnoc

For More Details

Work with Us

Connect With Me

Course Portal
Search