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Sunday, September 20, 2026

The Eastern Veil

NGC 6992 — you are not looking at ribbons. You are looking at the edge of a bubble.

The full Moon, for scale
0.5°
This frame — everything the telescope can see at once
1.0°
The whole Cygnus Loop
3.0°

What you see here is one edge of something six full moons wide.

Somewhere between ten and twenty thousand years ago, a star in Cygnus ran out of fuel. Its core collapsed, the rest of it came apart, and for a few weeks it would have been one of the brightest things in the sky. People saw it. Nobody could write yet, so nobody wrote it down.

What's left is a bubble of shocked gas about 130 light years across, still tearing outward at roughly 1.5 million kilometres per hour.

Here's the part that took me a while to believe. Those ropes and ribbons aren't ropes or ribbons. The shell is thin — thinner, relative to its own size, than a soap bubble. Less than one part in fifty thousand of its radius. You only see it in the places where it curves edge-on into your line of sight. Everywhere else in this frame, the bubble is still there. You're just looking straight through it.

The red is hydrogen. The cyan is oxygen, glowing where the shock front is hottest and moving fastest, which is why it rides the leading edge of the arc rather than sitting inside it.

Five hours of exposure, one 8-inch telescope, a backyard north of Bucharest.


The long version

NGC 6992 is the brightest section of the eastern rim of the Cygnus Loop, catalogued as G74.0-8.5 and known variously as the Veil, the Network Nebula, or Caldwell 33. William Herschel found it on 5 September 1784 — the same year he catalogued NGC 7331, which was the subject of the last post here. His description of this one is unusually good: "branching nebulosity... the following part divides into several streams uniting again towards the south."

The remnant is middle-aged as these things go, with age estimates clustering around one to two times ten thousand years. X-ray spectra of the interior show a metal-rich plasma consistent with a Type II core-collapse event, so the progenitor was a high-mass star, and the remnant's unusually round shape suggests it exploded inside a cavity that the star's own wind had already cleared.

Distance has been argued over for decades. Minkowski put it at 770 parsecs in 1958 from proper motions Hubble had measured in 1937; later estimates ranged from 440 to 1400 pc. The current figure comes from Gaia parallaxes of stars sitting in front of and behind the expanding shell, giving 725 ± 15 pc, or about 2,400 light years.

The filament explanation is the standard one and it's worth stating precisely: the shock front is so thin compared with the radius of the shell that the emitting layer is only optically detectable when viewed exactly tangentially. Undulations in the surface produce several such tangent lines at once, which is why the filaments appear braided. Each one is roughly four billion miles thick — about the distance from here to Pluto.

Framing note: the Cygnus Loop measures roughly 2.8° × 3.5°. This telescope sees 1.00° × 42′. The whole object doesn't fit, and won't, even on the diagonal. The Eastern Veil on its own is a reasonable compromise.

Acquisition

DateNight of 17/18 September 2026
Integration40 × 450 s, 5 hours total
CalibrationMatched darks, flats, bias

Equipment

OpticsGSO RC8 carbon, 203 mm, with TS 2″ Photoline 0.8× reducer — 1271.5 mm at f/6.3
CameraQHY8L one-shot colour CCD at −10 °C, gain 0, offset 140
FilterOptolong L-eXtreme dual-band
MountHEQ5 Pro belt-modded, on PLL C82 pier, EQMOD
GuidingASI220MM Mini on TS 50 mm, pulse-guided, 4.13″/px
ControlN.I.N.A. 3.2.0.9001, PHD2 2.6.14
Image scale1.265″/px, field 1.00° × 42′

Processing

This is HOO from a one-shot-colour Bayer sensor with a dual-band filter, not a mono camera and a filter wheel. The L-eXtreme passes hydrogen and oxygen in narrow windows, and the two lines land in different parts of the Bayer matrix, so they can be pulled apart afterwards into what are effectively two separate monochrome images.

The same frame, without the stars

Almost none of the stars in this picture have anything to do with the nebula. They sit in front of it and behind it, scattered across thousands of light years of the Cygnus arm, and the supernova remnant just happens to lie along the same sightline. Modern processing can separate the two — a neural network trained to recognise stellar profiles pulls them out into their own layer, which is normally done so that stars and nebula can be stretched differently.

Run that separation and throw the star layer away, and this is what's left.

The Eastern Veil with the foreground and background stars removed. The small dark specks are where the brighter stars used to be.

It's a strange thing to look at. The structure is the same, but without the stars to give a sense of depth, the shell reads much more clearly as what it is — a surface, curving away from you, catching the light only along its folds.

  • Siril — calibration, registration, stacking, then the dual-band data split into separate Hα and OIII channels.
  • GraXpert — AI background extraction to flatten the light-pollution gradient, then stellar deconvolution and AI denoise on each channel. Stars came down from 4.7 to 2.6 pixels; background noise dropped about 40%.
  • StarNet — stars separated from nebula, so the two could be treated independently. This is what fixes the cyan-star problem that HOO images usually have: the nebula gets a pure, unmixed Hα-red and OIII-cyan, while the stars get a blend of both channels that restores their natural colour.
  • Siril again — generalised hyperbolic stretch per channel, HOO composition, and the two halves recombined.
  • Photoshop — black point, colour balance, curves, a little saturation.

Shot from a backyard north of Bucharest, Romania.

Thursday, September 17, 2026

220P/McNaught

The comet that was supposed to be boring.

Before the outburst, late May 2026
mag 18
Fourteen hours later, 31 May
mag 11
Reported peak, June
mag 8.2

Each step down the scale is roughly two and a half times brighter. It covered ten of them in under a day.

This comet was supposed to be boring.

220P/McNaught, found by Robert McNaught in 2004, loops the Sun every five and a half years. Small, faint, forgettable. Then in June it exploded, brightening by a factor of thousands in under fourteen hours. Then in August it did it again.

The green glow is real. It's carbon gas, C₂, fluorescing in sunlight at 516 nanometres. The fan above the core is dust being pushed off the nucleus.

Here's the problem. Over three hours the comet drifted across the sky against the stars. Stack for sharp stars and the comet smears into a streak. Stack for a sharp comet and every star becomes a trail.

So you do both, then blend them. Ninety frames, three hours, one comet that refuses to die.


The long version

Robert McNaught discovered this Jupiter-family comet from Siding Spring on 20 May 2004. On a 5.5-year orbit, it's the kind of object that usually passes unremarked.

Then, in a window of under fourteen hours spanning 30–31 May 2026, it brightened by roughly seven magnitudes, with some estimates putting the peak near magnitude 8.2. Perihelion followed on 14 June. A second outburst in August brightened it again by a factor of several hundred, and it was still holding near magnitude 9 at the end of that month. It makes its closest approach to Earth, 1.043 AU, on 12 October 2026.

The coma's green cast is diatomic carbon (C₂) fluorescing at 516 nm, a common signature in an active comet's inner coma. A short dust fan extends from the condensed nucleus.

On the processing: over the 3.6-hour run the comet moved 137 pixels against the star field, measured at 22.8″/h against an ephemeris prediction of 23″/h. A single stack can only keep one of the two sharp. The final image is a composite, one stack registered on the stars and one registered on the comet's own motion, combined so both are sharp. The smeared comet in the star-aligned stack was modelled from the comet's measured velocity and subtracted rather than masked, which leaves the star field completely intact.

Acquisition

Date17 September 2026, 01:23–05:00 EEST
Integration89 × 120 s at ISO 800, 2 h 58 m total
TrackingSidereal, dithered every 2 frames, no meridian flip
Calibration100 bias, 30 flats, matched darks

Equipment

OpticsGSO RC8 carbon, 203 mm, with TS 2″ Photoline 0.8× reducer, 1270 mm at f/6.3
CameraCanon EOS M50, no filter
MountHEQ5 Pro on PLL C82 pier, EQMOD
GuidingASI220MM Mini on TS 50 mm, pulse-guided, 4.13″/px, guide FWHM 3.16″
ControlN.I.N.A. 3.2.0.9001, PHD2 2.6.14
Image scale0.604″/px, plate-solved at 1269.5 mm
ProcessingSiril 1.4.4, dual registration (global star alignment and comet/asteroid registration), Winsorized sigma stacking, SPCC against Gaia DR3, background extraction; composite assembled with a motion-blur model of the comet's measured velocity

NGC 7331 + Stephan's Quintet

A single field, two very different distances

NGC 7331, and NGC 7320 in the Quintet
40 Mly
Stephan's Quintet, the four interacting members
290 Mly
Deer Lick Group
300 Mly

Everything in the frame looks like one neighbourhood. Only two of these objects actually are.

The big spiral is NGC 7331, about 40 million light years away in Pegasus. It's often called a twin of our own galaxy, same size, same shape. If you could fly out and look back at the Milky Way, this is roughly what you'd see. Herschel found it in 1784. Messier missed it completely.

Those four little smudges crowding its edge? Not companions. They're background galaxies eight times further out. Astronomers call them the Deer Lick Group, the fleas on the deer.

Top right, that tight knot of five is Stephan's Quintet, the first compact galaxy group ever discovered, in 1877. Four of them are genuinely tearing each other apart 290 million light years away. The fifth is a fraud. It's only 40 million light years off and just happens to sit in the same line of sight.

Three hours, two targets, one 8-inch telescope from a backyard north of Bucharest.


The long version

NGC 7331 is one of the brightest galaxies William Herschel catalogued, in 1784, and one of the more conspicuous objects Messier never recorded. It's an unbarred spiral in Pegasus at roughly 40 million light years, frequently described as a structural analogue of the Milky Way. Its central bulge rotates counter to the disk, a sign of a disturbed history.

The four small galaxies apparently clustered along its eastern flank, NGC 7335, 7336, 7337 and 7340, are not associated with it at all. They lie some 300 million light years beyond, and the chance alignment earned the whole arrangement the name Deer Lick Group.

About half a degree to the northwest sits Stephan's Quintet, found by Édouard Stephan at Marseille in 1877 and the first compact galaxy group ever identified. NGC 7317, 7318A, 7318B and 7319 are a genuinely interacting system at roughly 290 million light years, with NGC 7318B ploughing into the group at around 800 km/s. NGC 7320 is a foreground interloper at about 40 million light years, a discordant redshift that fuelled decades of argument before it was settled as a line-of-sight coincidence.

Framing both in one field needed a camera rotation of 90°. They sit about 28 arcminutes apart, against a field of 1°00′ × 40′.

Acquisition

Date16 September 2026, 21:15–23:50 EEST
Integration54 × 120 s at ISO 800, 1 h 48 m total
Calibration100 bias, 30 flats, matched darks

Equipment

OpticsGSO RC8 carbon, 203 mm, with TS 2″ Photoline 0.8× reducer, 1270 mm at f/6.3
CameraCanon EOS M50, no filter
MountHEQ5 Pro on PLL C82 pier, EQMOD
GuidingASI220MM Mini on TS 50 mm, pulse-guided, 4.13″/px
ControlN.I.N.A. 3.2.0.9001, PHD2 2.6.14
Image scale0.604″/px, plate-solved at 1269.5 mm
ProcessingSiril 1.4.4, calibration, registration, Winsorized sigma stacking, RBF background extraction, SPCC against Gaia DR3, generalised hyperbolic stretch

Tuesday, July 22, 2014

Image revision - Veil Nebula (NGC 6960)


New image this time only from 6 subs x 300seconds, calibrated and processed in PixInsight.

Monday, July 21, 2014

Unknown comet / object in Veil Nebula - NGC6960 (near 52 Cygni)

!UPDATE!
It turns out that the "comet" might just be a strange reflection of the star..unfortunately :(
!UPDATE

So, much to my surprise, when starting to edit the images in PixInsight for a revision of the previous image of the Western Veil, i got myself a comet on camera :) Also made an animated gif. I think it's a comet due to the greenish colour..however i cannot so far identify it.

Veil Nebula (NGC 6960 - Western veil)

The image below consists only of 10 subframes x 300seconds but were taken at a site with very dark skies.
Imaging scope was GSO Ritchey Chretien 8 inch and main camera was QHY8L.
Also 10 darks/10flats/100bias were used.
Stacked with DSS and processed only in Photoshop.. can't wait to process it in PixInsight :)

WIKI:
"The Veil Nebula is a cloud of heated and ionized gas and dust in the constellation Cygnus.
The analysis of the emissions from the nebula indicate the presence of oxygen, sulfur, and hydrogen. This is also one of the largest, brightest features in the x-ray sky.
The nebula was discovered on 1784 September 5 by William Herschel.

There are three main visual components:

The Western Veil (also known as Caldwell 34), consisting of NGC 6960 (the "Witch's Broom", "Finger of God",[5] or "Filamentary Nebula"[5]) near the foreground star 52 Cygni;
The Eastern Veil (also known as Caldwell 33), whose brightest area is NGC 6992, trailing off farther south into NGC 6995 and IC 1340; and
Pickering's Triangle (or Pickering's Triangular Wisp), brightest at the north central edge of the loop, but visible in photographs continuing toward the central area of the loop."

Wednesday, July 9, 2014

M101 Pinwheel - 05.07.2014


This is the second attempt with the GSO RC8" and the QHY8L, this time on M101.
There are 18 lights x 300s , 10 darkds, 20 flats and 100 bias.
Acquisition with EzCAP, guiding with PHD, all image registration/calibration and editing was done in PixInsight - great tool btw :)
The first image was also been streched again in PS, so the processing still continues until i reach a final image that i will be happy with.





Sunday, June 29, 2014

M27 with 8" RC

Hello again,

Below is a set of 10 subexposures of 240seconds of the Dumbbell Nebula, taken with my newest addition, the GSO Ritchey-Chretien 8inch scope and the QHY8L.
Darks and flats were used, stacked with DSS, and very quick PS editing (just levels, curves and some denoise).
I am thinking of getting the PixInsight software since the trial is over and it is 10 times as good as Photoshop..



Good night and clear skies,
Andrei

First Newtonian telescope C6-NGT

Hi all,

It's been some time since my last post.
I thought i'd post some images of my first scope which is a 6inch Newtonian and also the QHY8L CCD camera in the case.



Thursday, May 1, 2014

M13 Hercules globular cluster


WIKI: "Messier 13 (M13), also designated NGC 6205 and sometimes called the Great Globular Cluster in Hercules or the Hercules Globular Cluster, is a globular cluster of about 300,000 stars in the constellation of Hercules.
M13 was discovered by Edmond Halley in 1714, and catalogued by Charles Messier on June 1, 1764."


Taken also om 26 Apr 2014 with same equipment as below posts.
17 subs x 45 sec , darks and bias, no flats.



Monday, April 28, 2014

M81, M82 and M51 images processed in PixInsight 1.8

Hello everybody,

Below are the same 2 images of M81/M82 and M51, this time processed in PixInsight 1.8.
The images are also on Astrobin and plate-solved at the following URLs:
M51 image
and
M81/M82 image





More to follow...

Sunday, April 27, 2014

M51 Whirlpool Galaxy

Hello again,

Here is another image taken last night of the Whirlpool Galaxy M51.
There are 14x600s subexposures with same equipment as in the previous post.



More to follow :)

M81 and M82


Good evening, Here is a cropped image from last night of M81 and M82.
12 x 300s subexposures ( with QHY8L and 6inch newtonian / PHD and DBK21 for guiding)
(10 darks, 20 flats, 100 bias stacked with DSS and barely edited in PS)



More to follow...

Monday, March 31, 2014

Rosette Nebula


Hello everybody,

Coming back with what i think is the best proper image so far (except for the "hidden" amp glow on lower right) of Rosette Nebula (also classified as Caldwell 49).
The images were taken last night with an QHY8L with an IR/UV filter, on a clear sky with low wind and medium pollution. Guiding went pretty smooth with the DBK21 and PHD Guiding software.
Exposure time was 240 seconds and i managed to get 20 exposures. Also 20 darks, 20 flats and 20 bias were used in calibration/stacking with DeepSkyStacker.




WIKI: "The Rosette Nebula (also known as Caldwell 49) is a large, circular H II region located near one end of a giant molecular cloud in the Monoceros region of the Milky Way Galaxy. The open cluster NGC 2244 (Caldwell 50) is closely associated with the nebulosity, the stars of the cluster having been formed from the nebula's matter.

The complex has the following NGC designations:

NGC 2237 – Part of the nebulous region (Also used to denote whole nebula) NGC 2238 – Part of the nebulous region NGC 2239 – Part of the nebulous region (Discovered by John Herschel) NGC 2244 – The open cluster within the nebula (Discovered by John Flamsteed in 1690) NGC 2246 – Part of the nebulous region

The cluster and nebula lie at a distance of some 5,200 light-years from Earth (although estimates of the distance vary considerably, down to 4,900 light-years.[3]) and measure roughly 130 light years in diameter. The radiation from the young stars excite the atoms in the nebula, causing them to emit radiation themselves producing the emission nebula we see. The mass of the nebula is estimated to be around 10,000 solar masses.

It is believed that stellar winds from a group of O and B stars are exerting pressure on interstellar clouds to cause compression, followed by star formation in the nebula. This star formation is currently still ongoing.

A survey of the nebula with the Chandra X-ray Observatory in 2001 has revealed the presence of very hot, young stars at the core of the Rosette Nebula."

So, can't wait to comeback with more images !

Clear skies,
Andrei

Sunday, March 30, 2014

Wednesday, March 26, 2014

Supernova in M82


"On January 21st a group of astronomy students spotted Supernova 2014J in M82, the famous nearby irregular galaxy in Ursa Major. It peaked at V magnitude 10.5 during the first week of February, and as of March 5th it was still visible in amateur scopes about magnitude 12."

I took the image below on the 16th of February, with no darks or bias and guiding was pretty poor due to some wind.
Also M81 can be seen but not enough detail unfortunately.



"Spectra showed it to be a Type Ia supernova — an exploded white dwarf — with debris originally expanding at up to 20,000 kilometers per second.

M82 is a near neighbor as galaxies go, at a distance of 11 or 12 million light-years. It's a favorite for amateur astronomers and researchers alike with its thick dust bands, sprays of hydrogen gas, and bright center undergoing massive star formation. The supernova is not in the central star-forming region but off to one side, 58 arcseconds to the west-southwest."

Clear skies,
Andrei

Monday, December 2, 2013

ISON Updated news

Good morning,

It would seem that ISON hasn't survived its encounter with our Sun, although a fragment has emerged it is slowly fading. Below the animated image from LASCO C3, the coronagraph on the SOHO Satellite:



Here is also an excerpt from NBC News (latest):

"Previous reports of Comet ISON's death may have been somewhat exaggerated, but this time it looks like the real thing.
Remnants of the object once touted as the "comet of the century" passed through the viewing field of the Solar and Heliospheric Observatory in the wake of Thursday's close encounter with the sun — and as it passed, the bright spot that survived grew dimmer and dimmer.

"I do think that something emerged from the sun, but probably a very small nucleus or 'rubble pile.' and I fear that may have now dissolved," Karl Battams, an astrophysicist at the Naval Research Laboratory who has been studying ISON for months, wrote Saturday in a Twitter update."
See the entire article here