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SpaceWeather.com -- News and information about meteor showers, solar flares, auroras, and near-Earth asteroids
 
Solar wind
speed: 326.7 km/sec
density: 7.4 protons/cm3
more data: ACE, DSCOVR
Updated: Today at 2345 UT
X-ray Solar Flares
6-hr max: A1
1818 UT Jun19
24-hr: A1
0619 UT Jun19
explanation | more data
Updated: Today at: 2350 UT
Daily Sun: 19 Jun 20
The sun is blank--no sunspots. Credit: SDO/HMI

Sunspot number: 0
What is the sunspot number?
Updated 19 Jun 2020

Spotless Days
Current Stretch: 3 days
2020 total: 125 days (73%)
2019 total: 281 days (77%)
2018 total: 221 days (61%)
2017 total: 104 days (28%)
2016 total: 32 days (9%)
2015 total: 0 days (0%)
2014 total: 1 day (<1%)
2013 total: 0 days (0%)
2012 total: 0 days (0%)
2011 total: 2 days (<1%)
2010 total: 51 days (14%)
2009 total: 260 days (71%)
2008 total: 268 days (73%)
2007 total: 152 days (42%)
2006 total: 70 days (19%)

Updated 19 Jun 2020


Thermosphere Climate Index
today: 2.79
x1010 W Cold
Max: 49.4
x1010 W Hot (10/1957)
Min: 2.05
x1010 W Cold (02/2009)
explanation | more data: gfx, txt
Updated 18 Jun 2020

The Radio Sun
10.7 cm flux: 68 sfu
explanation | more data
Updated 18 Jun 2020

Cosmic Rays Solar minimum is underway. The sun's magnetic field is weak, allowing extra cosmic rays into the solar system. Neutron counts from the University of Oulu's Sodankyla Geophysical Observatory show that cosmic rays reaching Earth in 2020 are near a Space Age peak.

Oulu Neutron Counts

Percentages of the Space Age average:
today: +9.7% High
48-hr change: +0.0%
Max: +11.7% Very High
(12/2009)
Min: -32.1% Very Low (06/1991)
explanation | more data
Updated 18 Jun 2020 @ 0600 UT

Current Auroral Oval:
Switch to: Europe, USA, New Zealand, Antarctica
Credit: NOAA/Ovation
Planetary K-index
Now: Kp= 2 quiet
24-hr max: Kp= 2
quiet
explanation | more data
Interplanetary Mag. Field
Btotal: 6.2 nT
Bz: -1.6 nT south
more data: ACE, DSCOVR
Updated: Today at 2345 UT
Coronal Holes: 19 Jun 20

There are no large coronal holes on the Earthside of the sun.
Credit: SDO/AIA

Noctilucent Clouds NLC season has begun. NASA's AIM spacecraft detected a blue cloud over the north pole on May 17th--one of the earliest starts in the spacecraft's 14 year history. Check here for daily images from AIM.
Switch view: Europe, USA, Asia, Polar
Updated at:
SPACE WEATHER
NOAA Forecasts
Updated at: 2020 Jun 19 2200 UTC
FLARE
0-24 hr
24-48 hr
CLASS M
01 %
01 %
CLASS X
01 %
01 %
Geomagnetic Storms:
Probabilities for significant disturbances in Earth's magnetic field are given for three activity levels: active, minor storm, severe storm
Updated at: 2020 Jun 19 2200 UTC
Mid-latitudes
0-24 hr
24-48 hr
ACTIVE
05 %
05 %
MINOR
01 %
01 %
SEVERE
01 %
01 %
High latitudes
0-24 hr
24-48 hr
ACTIVE
15 %
15 %
MINOR
15 %
15 %
SEVERE
10 %
10 %
 
Friday, Jun. 19, 2020
What's up in space
       
 

Never miss another geomagnetic storm. Sign up for Space Weather Alerts and you'll receive a text message when auroras appear in your area. Aurora tour guides and professional astronomers use this service. Now you can, too!

 

'RING OF FIRE' SOLAR ECLIPSE: The sun is about to turn into a "ring of fire." On June 21st, the Moon will pass directly in front of the sun, producing an annular solar eclipse over Earth's eastern hemisphere. Greatest coverage occurs over the Himalaya of northern India. A partial eclipse will be visible over eastern Africa, the Middle East, India, and most of Asia. Watch: Animated Preview.

LUNAR OCCULTATION OF VENUS: This morning in Europe, astronomers witnessed a lunar occultation of Venus in broad daylight. Surrounded by blue sky, the Moon eclipsed the second planet. Didier Favre of Brétigny-sur-Orge, France, photographed the event moments before Venus disappeared behind the sunlit edge of the Moon:

"This was an extraordinary astronomical event--the first lunar occultation of Venus I have observed in 13 years," says Favre.

At the time of the occultation, both the Moon (4%) and Venus (8%) were thin crescents, adding to the beauty of the event. For more images, browse the realtime photo gallery!

Realtime Venus Photo Gallery
Free:
Spaceweather.com Newsletter

NOCTILUCENT CLOUDS OVER OREGON: Noctilucent clouds (NLCs) have descended to their lowest latitude of the 2020 season: +44 N in Bend, Oregon. "I woke up at 3:30 am on June 18th to a very bright sky shining through the shades," says Bend resident Roy Reynolds, who photographed the silvery clouds lighting up the northern sky:

"I've been living here for 18 years and have seen this only two other times," says Reynolds. "Beautiful!"

NLCs are Earth’s highest clouds. Seeded by meteoroids, they float at the edge of space 83 km above the ground. The clouds form when summertime wisps of water vapor rise up to the mesosphere, allowing water to crystallize around specks of meteor smoke.

The low latitude record for noctilucent clouds is +34 N, set during the summer of 2019 when NLCs descended as far south as Los Angeles and Las Vegas. There's a chance the clouds could spread to similar latitudes in 2020. Record cold temperatures in the mesosphere are boosting the production of NLCs, pushing their electric-blue ripples farther south with each passing night. Stay tuned.

Realtime Space Weather Photo Gallery
Free:
Spaceweather.com Newsletter

APOLLO 11 PROOF SILVER DOLLAR (COLLECTOR'S ITEM): Are you looking for a far-out gift? Consider this: On July 20, 2019 (the 50th anniversary of the Apollo 11 Moon landing), the students of Earth to Sky Calculus flew this rare proof silver dollar to the stratosphere:

The US Mint created the coins to celebrate the first Moon landing--but you can no longer buy them from the Mint. You can, however, get one from Earth to Sky Calculus. The students are selling the collector's item for $229.95 to support their cosmic ray ballooning program.

The silver dollar is curved and reproduces the helmet of astronaut Buzz Aldrin. Reflected in Buzz's visor are Neil Armstrong, the United States flag, and the lunar lander. The opposite side of the coin shows Neil's iconic footprint on the Moon. Included is a greeting card showing the coin in flight and a certificate of authenticity.

Far Out Gifts: Earth to Sky Store
All sales support hands-on STEM education


Realtime Aurora Photo Gallery
Free:
Spaceweather.com Newsletter

  All Sky Fireball Network
Every night, a network of NASA all-sky cameras scans the skies above the United States for meteoritic fireballs. Automated software maintained by NASA's Meteoroid Environment Office calculates their orbits, velocity, penetration depth in Earth's atmosphere and many other characteristics. Daily results are presented here on Spaceweather.com.

On June 19, 2020, the network reported 5 fireballs.
(5 sporadics)

In this diagram of the inner solar system, all of the fireball orbits intersect at a single point--Earth. The orbits are color-coded by velocity, from slow (red) to fast (blue). [Larger image] [movies]

  Near Earth Asteroids
Potentially Hazardous Asteroids (PHAs) are space rocks larger than approximately 100m that can come closer to Earth than 0.05 AU. None of the known PHAs is on a collision course with our planet, although astronomers are finding new ones all the time.
On June 19, 2020 there were 2037 potentially hazardous asteroids.
Recent & Upcoming Earth-asteroid encounters:
Asteroid
Date(UT)
Miss Distance
Velocity (km/s)
Diameter (m)
2020 LL
2020-Jun-14
5.6 LD
19.8
29
2017 MF7
2020-Jun-14
3.7 LD
10.9
23
2020 KP6
2020-Jun-16
3.6 LD
10.8
41
2020 JU3
2020-Jun-17
6.9 LD
10.9
53
2020 KF3
2020-Jun-17
12.5 LD
3.4
15
2020 LG
2020-Jun-18
8.9 LD
10.6
51
2018 PD22
2020-Jun-19
17.2 LD
14.6
56
2020 KR1
2020-Jun-22
11.6 LD
6.8
42
2020 LV
2020-Jun-22
5.4 LD
4.8
32
441987
2020-Jun-24
9.8 LD
12.9
186
2017 FW128
2020-Jun-25
6.9 LD
5.4
11
2020 MA
2020-Jun-25
5.4 LD
7.8
32
2020 MK
2020-Jun-27
12 LD
17.8
115
2020 KQ7
2020-Jun-27
10.3 LD
2.6
18
2020 JX1
2020-Jun-29
3.3 LD
5
62
2019 AC3
2020-Jul-01
10.5 LD
3.4
12
2007 UN12
2020-Jul-04
16.7 LD
2.9
6
2020 LS
2020-Jul-04
19.4 LD
11.6
73
2020 ML
2020-Jul-12
11.4 LD
4.5
22
2020 KJ7
2020-Jul-13
11.9 LD
3.4
30
2009 OS5
2020-Jul-13
17.6 LD
2.6
45
2016 DY30
2020-Jul-19
9 LD
15.1
3
2002 BF25
2020-Jul-21
9.4 LD
6.8
129
2018 PY7
2020-Jul-31
8.9 LD
9.5
16
2007 RF1
2020-Jul-31
10.7 LD
5
21
2018 BD
2020-Aug-03
7.6 LD
9.4
3
2009 PQ1
2020-Aug-05
10.8 LD
13.5
112
Notes: LD means "Lunar Distance." 1 LD = 384,401 km, the distance between Earth and the Moon. 1 LD also equals 0.00256 AU. MAG is the visual magnitude of the asteroid on the date of closest approach.
  Cosmic Rays in the Atmosphere

SOMETHING NEW! We have developed a new predictive model of aviation radiation. It's called E-RAD--short for Empirical RADiation model. We are constantly flying radiation sensors onboard airplanes over the US and and around the world, so far collecting more than 22,000 gps-tagged radiation measurements. Using this unique dataset, we can predict the dosage on any flight over the USA with an error no worse than 15%.

E-RAD lets us do something new: Every day we monitor approximately 1400 flights criss-crossing the 10 busiest routes in the continental USA. Typically, this includes more than 80,000 passengers per day. E-RAD calculates the radiation exposure for every single flight.

The Hot Flights Table is a daily summary of these calculations. It shows the 5 charter flights with the highest dose rates; the 5 commercial flights with the highest dose rates; 5 commercial flights with near-average dose rates; and the 5 commercial flights with the lowest dose rates. Passengers typically experience dose rates that are 20 to 70 times higher than natural radiation at sea level.

To measure radiation on airplanes, we use the same sensors we fly to the stratosphere onboard Earth to Sky Calculus cosmic ray balloons: neutron bubble chambers and X-ray/gamma-ray Geiger tubes sensitive to energies between 10 keV and 20 MeV. These energies span the range of medical X-ray machines and airport security scanners.

Column definitions: (1) The flight number; (2) The maximum dose rate during the flight, expressed in units of natural radiation at sea level; (3) The maximum altitude of the plane in feet above sea level; (4) Departure city; (5) Arrival city; (6) Duration of the flight.

SPACE WEATHER BALLOON DATA: Approximately once a week, Spaceweather.com and the students of Earth to Sky Calculus fly space weather balloons to the stratosphere over California. These balloons are equipped with radiation sensors that detect cosmic rays, a surprisingly "down to Earth" form of space weather. Cosmic rays can seed clouds, trigger lightning, and penetrate commercial airplanes. Furthermore, there are studies ( #1, #2, #3, #4) linking cosmic rays with cardiac arrhythmias and sudden cardiac death in the general population. Our latest measurements show that cosmic rays are intensifying, with an increase of more than 18% since 2015:

The data points in the graph above correspond to the peak of the Regener-Pfotzer maximum, which lies about 67,000 feet above central California. When cosmic rays crash into Earth's atmosphere, they produce a spray of secondary particles that is most intense at the entrance to the stratosphere. Physicists Eric Reneger and Georg Pfotzer discovered the maximum using balloons in the 1930s and it is what we are measuring today.

En route to the stratosphere, our sensors also pass through aviation altitudes:

In this plot, dose rates are expessed as multiples of sea level. For instance, we see that boarding a plane that flies at 25,000 feet exposes passengers to dose rates ~10x higher than sea level. At 40,000 feet, the multiplier is closer to 50x.

The radiation sensors onboard our helium balloons detect X-rays and gamma-rays in the energy range 10 keV to 20 MeV. These energies span the range of medical X-ray machines and airport security scanners.

Why are cosmic rays intensifying? The main reason is the sun. Solar storm clouds such as coronal mass ejections (CMEs) sweep aside cosmic rays when they pass by Earth. During Solar Maximum, CMEs are abundant and cosmic rays are held at bay. Now, however, the solar cycle is swinging toward Solar Minimum, allowing cosmic rays to return. Another reason could be the weakening of Earth's magnetic field, which helps protect us from deep-space radiation.

  Essential web links
NOAA Space Weather Prediction Center
  The official U.S. government space weather bureau
Atmospheric Optics
  The first place to look for information about sundogs, pillars, rainbows and related phenomena.
Solar Dynamics Observatory
  Researchers call it a "Hubble for the sun." SDO is the most advanced solar observatory ever.
STEREO
  3D views of the sun from NASA's Solar and Terrestrial Relations Observatory
Solar and Heliospheric Observatory
  Realtime and archival images of the Sun from SOHO.
Daily Sunspot Summaries
  from the NOAA Space Environment Center
NOAA 27-Day Space Weather Forecasts
  fun to read, but should be taken with a grain of salt! Forecasts looking ahead more than a few days are often wrong.
Aurora 30 min forecast
  from the NOAA Space Environment Center
Heliophysics
  the underlying science of space weather

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