Showing posts with label Lyrid Meteors. Show all posts
Showing posts with label Lyrid Meteors. Show all posts

Tuesday, 21 April 2026

The Lyrid Meteor Shower.

The Lyrid Meteor Shower is expected to be visible between Thursday 16 and Saturday 25 April this year (2022), and will be at peak visibility on Wednesday 22 April. With the First Quarter Moon not falling till the 24th this year,  there should be a good chance to see some meteors in cloudless areas. At its peak the Lyrid Meteor shower typically produces about 20 meteors per hour, though higher rates have been recorded. The Lyrid Meteors take their name from the constellation of Lyra, from which they appear to radiate, at a point close to the star Vega, which will be above the horizon for most of the night from most places in the Northern Hemisphere, while rising at about midnight in much of the Southern Hemisphere. Viewing is typically best in the hours before dawn, although peak meteor activity should occur at about 8.00 pm GMT.

The Radiant Point (i.e. point from which the meteors appear to radiate) of the Lyrid Meteors. Bruce McClure/Joni Hall/EarthSky/Wikimedia Commons.

Meteor streams are thought to come from dust shed by comets as they come close to the Sun and their icy surfaces begin to evaporate away. Although the dust is separated from the comet, it continues to orbit the Sun on roughly the same orbital path, creating a visible meteor shower when the Earth crosses that path, and flecks of dust burn in the upper atmosphere, due to friction with the atmosphere.

The Earth passing through a stream of comet dust, resulting in a meteor shower. Not to scale. Astro Bob.

The Lyrid Meteors are comprised of debris from the comet C/1861 G1 Thatcher (named after its discoverer, the astronomer A. E. Thatcher, not the politician). This is a long-period comet that spends most of its time in the Oort Cloud, only visiting the inner Solar System once every 415 years, the last occasion being in 1861. When the comet visits the inner Solar System it is heated by the Sun, melting the ices that make up its surface and releasing a trail of dust, which continues to follow the path of the comet. The Earth passes through this trail in April each year, creating a light show as the dust particles burn in the upper atmosphere.

How the passage of the Earth through a meteor shower creates a radiant point from which they can be observed. In The Sky.

Comet C/1861 G1 Thatcher completes one orbit every 415 years on an eccentric orbit tilted at 79.8° to the plane of the Solar System, that takes it from 0.92 AU from the Sun (92% of the average distance at which the Earth orbits the Sun) to 106 AU from the Sun (110 times as far from the Sun as the Earth, and more than three times the distance at which the planet Neptune orbits the Sun). The comet last visited the Inner Solar System in 1891, and is expected to return again in 2306. As a comet with an orbital period of more than 200 years it is considered to be a Long Period Comet.

The orbit and current position of Comet C/1861 G1 Thatcher. JPL Small Body Database.

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Tuesday, 19 April 2022

The Lyrid Meteors.

The Lyrid Meteors is expected to be visible between Saturday16 and Monday 25 April this year (2022), and will be at peak visibility on Friday 22 April. With the Third Quarter Moon falling on Saturday 23 April, this year will not be the best opportunity to see these meteors, but nevertheless there should be a good chance to see them in cloudless areas. At its peak the Lyrid Meteor shower typically produces about 20 meteors per hour, though higher rates have been recorded. The Lyrid Meteors take their name from the constellation of Lyra, from which they appear to radiate, at a point close to the star Vega, which will be above the horizon for most of the night from most places on Earth this week, setting at about 5.00 am.

 
The Radiant Point (i.e. point from which the meteors appear to radiate) of the Lyrid Meteors. Bruce McClure/Joni Hall/EarthSky/Wikimedia Commons.

The Lyrid Meteors are comprised of debris from the comet C/1861 G1 Thatcher (named after the astronomer A. E. Thatcher, not the politician). This is a long-period comet that spends most of its time in the Oort Cloud, only visiting the inner Solar System once every 415 years, the last occasion being in 1861. When the comet visits the inner Solar System it is heated by the Sun, melting the ices that make up its surface and releasing a trail of dust, which continues to follow the path of the comet. The Earth passes through this trail in April each year, creating a light show as the dust particles burn in the upper atmosphere.

 
The orbit and current position of Comet C/1861 G1 Thatcher. JPL Small Body Database.

Comet C/1861 G1 Thatcher completes one orbit every 415 years on an eccentric orbit tilted at 79.8° to the plane of the Solar System, that takes it from 0.92 AU from the Sun (92% of the average distance at which the Earth orbits the Sun) to 106 AU from the Sun (110 times as far from the Sun as the Earth, and more than three times the distance at which the planet Neptune orbits the Sun). The comet last visited the Inner Solar System in 1891, and is expected to return again in 2306. As a comet with an orbital period of more than 200 years it is considered to be a Long Period Comet.

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Friday, 17 April 2020

The Lyrid Meteor Shower.

The Lyrid Meteors is expected to be visible between Thirsday16 and Saturday 25 April this year (2020), and will be at peak visibility on Sunday 29 April. With the Full Moon also falling on Friday 19 April, with the New Moon falling four days after this on Thursday 23 April, this year should provide a good opportunity to see these meteors. At its peak the Lyrid Meteor shower typically produces about 20 meteors per hour, though higher rates have been recorded. The Lyrid Meteors take their name from the constellation of Lyra, from which they appear to radiate, at a point close to the star Vega, which will rise at about 10.30 pm local time from most places on Earth this week.

 The radiant point of the Lyrid Meteors. Stellarium/Phys.Org.

The Lyrid Meteors are comprised of debris from the comet C/1861 G1 Thatcher (named after the astronomer A. E. Thatcher, not the politician). This is a long-period comet that spends most of its time in the Oort Cloud, only visiting the inner Solar System once every 415 years, the last occasion being in 1861. When the comet visits the inner Solar System it is heated by the Sun, melting the ices that make up its surface and releasing a trail of dust, which continues to follow the path of the comet. The Earth passes through this trail in April each year, creating a light show as the dust particles burn in the upper atmosphere.

The orbit and current position of Comet C/1861 G1 Thatcher. JPL Small Body Database.

Comet C/1861 G1 Thatcher completes one orbit every 415 years on an eccentric orbit tilted at 79.8° to the plane of the Solar System, that takes it from 0.92 AU from the Sun (92% of the average distance at which the Earth orbits the Sun) to 106 AU from the Sun (110 times as far from the Sun as the Earth, and more than three times the distance at which the planet Neptune orbits the Sun). The comet last visited the Inner Solar System in 1891, and is expected to return again in 2306. As a comet with an orbital period of more than 200 years it is considered to be a Long Period Comet.

See also...

https://sciencythoughts.blogspot.com/2020/04/estimating-potential-for-life-to-have.htmlhttps://sciencythoughts.blogspot.com/2020/03/fragment-of-meteorite-found-in-slovenia.html
https://sciencythoughts.blogspot.com/2020/03/fireball-over-slovenia.htmlhttps://sciencythoughts.blogspot.com/2020/02/fireball-meteor-over-arizona.html
https://sciencythoughts.blogspot.com/2020/02/fireball-meteor-over-southern-north-sea.htmlhttps://sciencythoughts.blogspot.com/2020/02/fireball-meteor-over-alberta.html
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Tuesday, 16 April 2019

The Lyrid Meteor Shower.

The Lyrid Meteors is expected to be visible between Friday 19 and Thursday 25 April this year, and will be at peak visibility on Tuesday 23 April in 2019. With the Full Moon also falling on Friday 19 April, the views of this shower will not be the best this year, as the brightness of the Moon tends to obscure dimmer objects. At its peak the Lyrid Meteor shower typically produces about 20 meteors per hour, though higher rates have been recorded.
 

Sky map showing the radiant point for the Lyrid Meteors (i.e. the point from which the meteors appear to radiate) on 23 April 2019. In the Sky.

The Lyrid Meteors are comprised of debris from the comet C/1861 G1 Thatcher (named after the astronomer A. E. Thatcher, not the politician). This is a long-period comet that spends most of its time in the Oort Cloud, only visiting the inner Solar System once every 415 years, the last occasion being in 1861. When the comet visits the inner Solar System it is heated by the Sun, melting the ices that make up its surface and releasing a trail of dust, which continues to follow the path of the comet. The Earth passes through this trail in April each year, creating a light show as the dust particles burn in the upper atmosphere which appears to radiate from the star Vega in the constellation of Lyra.  

 The orbit and current position of C/1861 G1 Thatcher. JPLSmall-Body Database Browser.

See also...

https://sciencythoughts.blogspot.com/2019/03/fireball-meteor-over-new-york-state.htmlhttps://sciencythoughts.blogspot.com/2019/03/possible-second-large-impact-crater.html
https://sciencythoughts.blogspot.com/2019/03/discovery-of-large-impact-crater.htmlhttps://sciencythoughts.blogspot.com/2019/03/nasas-terra-satelite-detects-huge.html
https://sciencythoughts.blogspot.com/2019/03/comet-69ptaylor-reaches-perihelion.htmlhttps://sciencythoughts.blogspot.com/2019/03/investigating-meteoroid-impact-on-moon.html
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