The Ancient Collision That Everyone Saw

The year is 1987, and on February 23rd, three separate neutrino observatories experienced a huge burst in detections. Although initially unsure of their origin, the next day a Supernova was discovered in the Large Magellanic Cloud, a small satellite galaxy of the Milky Way visible in the southern hemisphere.  Known as 1987A, it was the closest supernova observed in centuries, and was observed by astronomers around the world as it brightened and then slowly dimmed.  By combining the visible observations with the neutrino data, scientists learned about how supernovae occur, constrained the mass of the neutrino, and opened a new...

Dark Matter is Complicated

The fact that we have found gravitational waves tells us that we have come a long way in terms of science and technology.  We detected a perturbation in the fabric of space-time that was one one-thousandth the diameter of a proton.  It’s insane to think about that level of precision.  And yet we still can’t find Dark Matter, the stuff that is literally everywhere in the universe.  Is it our problem? Or is dark matter just on a whole different level? By now, we know that dark matter isn’t some clump of stuff sitting out there in space.  But that...

New Gamma Source

Gamma rays are the highest energy photons on the electromagnetic spectrum.  Their wavelength is similar to the size of an atom, and when two of them collide they tend to produce a matter-antimatter particle pair.  They represent energy high enough to synthesize the fundamental particles of matter, and are produced in the highest energy environments in the cosmos.  The interchange of matter and energy works both ways, so one of the ways gamma rays are generated is through annihilation of a matter-antimatter particle pair.  Looking back to the beginning of the universe it gives us the earliest ‘chicken or egg’...

Gamma Rays Point to Pulsars, Not Dark Matter

Gamma rays are the most powerful form of electromagnetic radiation in the universe.  With wavelengths as small at atoms, they usually result from the most powerful interactions known, such as the collision of two particles, or the release of energy from the accretion disk of a black hole.  But there is another potential source of gamma rays that has not yet been confirmed: Dark Matter. The leading candidate for dark matter is the theorized Weakly Interacting Massive Particle (WIMP), though it is not as wimpy as its namesake suggests, making up 5 times as much mass as the visible matter...

We Looked for Life in 100,000 Galaxies: Is Anybody Home?

100,000 Galaxies.  Each one contains Billions upon Billions of stars.  Each star could have planets, leading to countless possibilities of variation and the potential for life.  But would we see the signs of civilization from Earth?  Could a highly advanced civilization control the entire population of stars in their galaxy and harness that energy for their industry?  Would they alter their stellar environment enough that we could see them? This is exactly the line of questioning that led astronomers to look at over 100,000 different nearby galaxies in mid-infrared emission to see some potential signs of Alien life.  In these...

2 Million Kph Wind from the Milky Way Core!

I thought Hurricanes had powerful winds.   The strongest wind ever recorded was a gust up to 400 Kph near a tropical cyclone in Australia.  But Earthbound wind has nothing on Galactic wind. Around the time when our ancestors were just learning to walk upright, the core of the Milky Way Galaxy unleashed a blast of gasses and material at 2 Million Kph. Millions of years later, we see the aftermath of this eruption as two massive bubbles of material blown out above and below the galactic centre, at least 30,000 Light Years tall! The lobes were discovered by the...