Geeking Science: Dyson or Dust?

Image courtesy of Jolee G at FreeDigitalPhotos.net

Kepler gave us a lot of data. Like a lot, a lot of data. For four years, the lens stared into a small portion of our sky, monitoring about 200,000 stars waiting to see if any of them blinked.

A blink indicating something transiting in front of the star. Like a planet.

It would be mostly luck if anything was found – the planet’s orbit would need to be four years or less (preferably less so a pattern could be found from the number of transits verifying a planet instead of a glitch) and large enough to make a difference  in the luminescence being monitored, and on orbit plane to transit between the star and Earth. But 200,000 was a large enough sample to give random luck a lot of dice rolls.

Computers are still crunching through the information, and grad students monitoring them are still making discoveries a decade later. Some of the data is available to citizen-scientists at the Mikulski archives if you would like to play along. (See Bibliography.)

In 2015, a published study indicated a group of students looking for blinks found something.

Specifically, Tabetha Boyajian discovered an anomaly with star KIC 8462852.

Scientists LOVE anomalies.

Makes them have to create new theories.

The star didn’t just blink – meaning a Jupiter-size planet passed in front dropping the luminescence by less that 1% for a couple hours. No, this puppy practically closed it eye. Depending on the day in the four-year monitoring, the eye was wide open or varied between 0.5% to 22% – yes, twenty-two percent – dip in luminescence. That is a big, Big, BIG transit. And not just a quick hour rush across the surface of the star, the dips sometimes lasted for weeks.

So, not constant in amount, not on any orderly schedule they could find (like, say, a planetary orbit), and way too big. On top of all that, it was jagged change curve – not a smooth, like a single planet-sized object create. 

Maybe something or multiple somethings between us and it? After all, we are talking 1,468 light years. 

Oh, and, even better, the overall luminescence was slowly dipping too – maybe as much as 3% during the observation time-frame.

So another scientist went looking, because that is what scientists do – they look at other people’s tests like it is middle school all over again. Only they call it “peer review”. Bradley Schrieffer, an astronomer at Louisiana State University, went deep diving doing his peer review thing, searching through photographic plates dating back to 1890. Seems that KIC 8462852 … now, Boyajian’s Star (because if you discover anomalies, things get named after you – a much better way to get in the science books than have a disease named after you) … not only does the dip thing, but it has been steadily losing luminescence during that entire time to the tune of 15% over the century.

Stars don’t just dim. Not over a hundred years. And not with random fluxes in between.

No wonder the students nicknamed the star the WTF? star (What the Flux?).

Then scientists did what scientists do when faced with data not matching known phenomenon. They created theories and ran thought and model tests. (In the writing biz, we would call this creating fiction – coming up with ideas and then seeing if we got something with enough legs to be a novel.)

Big thing between us and the star? For 100 years and doing periodic increases and decreases? And why aren’t other stars in the observed area also obscured?

Comet didn’t work, too small. A fleet of comets coming from who knows where – maybe, except one hundred years? Move that down on the list.

Dust? For 100 years? A star’s solar winds would have blown that away in a couple years. WTF? star was old and stable enough to have cleared out any protoplanet dust clouds millions of years ago. Day-to-day cleanup, from say asteroids colliding, requires only a quick blow and all the dust is gone.

How about the sun eating a planet? Maybe? If the planet was eaten a hundred years ago, making the star brighter and it is still coming down from that and it ejected a dust cloud that for some reason (and here where this theory died) has a variable orbit and can block upto 22% of the light of its star on a good day. Yeah, not so much.

How about a Dyson sphere in-process of being built?

Everyone stared at the sci-fi geek. I mean, all scientists are sci-fi geeks, but some are more geeky than others. The word Alien is a last option choice. Because, underneath it all, it is what everyone who looks up to the stars hopes for. That we aren’t alone. That, maybe, there is someone to talk to someday. But because we want it so, so bad, we must eliminate every.other.option first. First rule of Dyson spheres in the astronomical community is don’t talk about Dyson spheres.

But they put “alien megastructure” on the list, because the slow buildup of a super-size structure fit the data available the best.

Next, armed with theories to test, the scientists gathered data through … a Kickstarter to buy telescope time. (Boyajian 2016) They needed to find a dip and then get a WHOLE bunch of different types of filters recording the event as soon as one occurred. The up-side is the WTF? star had the long transit so they had time to get several telescopes looking at the same place if money was paid in advance.

The kickstarter funded and the data came in.

And .. dust … maybe?

Whatever is in the way can be seen through in some wavelengths but not others, which indicates lots of little grains instead of full opaque sheets like a Dyson sphere would have. Well, it was a long-shot anyway. Any species in space isn’t likely to go into space just to stick close to home and create a shell to hide in.

But the dust isn’t the normal interstellar size. And we still have the slow overall decrease of the luminescence over a century as well as the random fluctuations of varying duration and sequence. So not normal dust. Another anomaly.

The scientists must absolutely love Boyajain’s Star. A mystery for going on three years.

Next up, I’m betting they want more data. Another star maybe? Kepler had a very narrow view. Only 200,000 stars (only two hundred thousand is something that gets tagged as “only” in astronomy).

We got a lot of sky to investigate. We will figure this mystery out.

Dust to dust.

And while sweeping up the dust, maybe we might find a Dyson sphere. Who knows? After, that is a lot of stars for humanity to be alone.

In the meantime, what can science fiction writers speculate about what the dust could be?

 

Bibliography

Bochanski, John. “New Observations of the ‘Most Mysterious Star in the Galaxy'”. Sky and Telescope. 2018 January 3. https://www.skyandtelescope.com/astronomy-news/new-observations-mysterious-star-boyajian/ – Last viewed 12/2/2019.

Boyajian, Tabetha. “The most mysterious star in the Galaxy.” Kickstarter. 2016. https://www.kickstarter.com/projects/608159144/the-most-mysterious-star-in-the-galaxy – Last viewed 12/2/2019.

“Kepler”. Mikulski Archives Space Telescopes. https://archive.stsci.edu/kepler/ – Last viewed 12/2/2019.

“Kepler Mission Information”. NASA Exoplanet Archive. https://exoplanetarchive.ipac.caltech.edu/docs/KeplerMission.html – Last viewed 12/2/2019.

Siegel, Ethan. “Forget Alien Megastructures, New Observations Explain Tabby’s Star with Dust Alone.” Forbes. – Last viewed 12/2/2019.

Woo, Marcus. “The most mysterious star in the galaxy”. BBC. 2017 May 15. – Last viewed 12/2/2019 (seems to be missing as of 10/31/2022).

Geeking Science: Internal Clocks

Image courtesy of Nasa

Our body has a clock. A crazy accurate circadian rhythm clock that hates stupid changes like daylight savings, which happens on November 4, and traveling by airplane, leaping ahead on the planetary rotation cycle. Or any of the other dozen things we human do instead of sleeping with the day-night cycle of the planet.

For each hour shift, our bodies need a day to recover. Until the body is reset through signals from our day star and temperature, we drag and snap and have ever so slightly poorer health.

The real question isn’t how long does it take to recover, but how do we recover at all? Scientists are studying this question for a lot of reasons: insomnia, health issues affecting sleep, night occupations, shift workers, and, for the purpose of this post, settling other planets. Think about it. Mars’ daylight cycle is 24 hours and 39 minutes, not a clean 24. Jupiter’s moon Europa is three and a half days. Saturn’s moon Titan, the best candidate for a way-station before the Oort cloud and The Big Trip to visit other planetary systems, is nearly sixteen days. The Moon, four weeks. Venus, over 116 days, one-third of an Earth year.

Normally our bodies would recover in a day when changing a time zone. Imagine if every single day shift things nearly 40 minutes. If we live on the extra-forty-minute-day of Mars, and not in tunnels set to an Earth cycle, we and our neighbors will suffer perpetual jet lag symptoms of: disrupted sleep cycles, fatigue, difficulty concentrating and functioning, digestive issues like constipation or diarrhea, and mood changes. Long-term health issues increase since the regular healing cycle of the body is disrupted, increasing cancer and heart issues. 

The human clock is not a perfect 24-hour clock, any more than an Earth day is always a perfect split of 12 hours day-12 hours night. We are built to handle seasonal shifts, including the up-to three minute shift in daylight per day, by resetting the clock with the sun every morning. (Staying up late at night staring at glowing screens screws up this resetting. Just saying, marathon Netflix watchers.) According to a recent study, our biological clock runs 24 hours and 11 minutes. with a 16-minute variation by individual.

We got wiggle room for small seasonal shifts. We can even make big shifts when required. The question is what happens when the entire planets is pulling a daylight saving’s change every single day. Humans are built for Earth; our internal clock screams it “Tick, tock.”

And yet. And yet.

We were built for Earth, but we are not going to stay here. Tick, tock.

 

Bibliography

Human Biological Clock Set Back an Hour. William J. Cromie. Harvardgazette. July 15, 1999. (last viewed 11/23/2017: https://news.harvard.edu/gazette/story/1999/07/human-biological-clock-set-back-an-hour/)

The Hidden Impact of Jet Lag on Your Body. Sarah Digiulio. Huffpost. April 15, 2016. (last viewed 11/23/2017: https://www.huffingtonpost.com/entry/the-hidden-impact-of-jet-lag-on-your-body_us_570ec6d5e4b0ffa5937e236d)

Watch Out: Daylight Savings Time May Cause Heart Attack Spike. Laura Geggel. LiveScience. March 7, 2005. (last viewed 11/23/2017: https://www.livescience.com/50068-daylight-saving-time-heart-attacks.html)

Welcome to Mars! Enjoy Perpetual Jet Lag Under An Eerie Red Sky. Rebecca Boyle. FiveThirtyEight. March 7, 2017. (last viewed 11/23/2017: https://fivethirtyeight.com/features/welcome-to-mars-enjoy-perpetual-jet-lag-under-an-eerie-red-sky/?ex_cid=SigDig)

Geeking Science: Trees and Oxygen

Image courtesy of prozac1 at FreeDigitalPhotos.net

Ever have a Homer Simpson “d’oh” moment? I guess everyone has. I had a big one, like facepalm, “why did not I never realize?” moment while driving.

Everyone goes on and one about how important trees are to Earth’s oxygen cycle, protecting the Rain Forest, preventing clear cutting, all that jazz. And I’m driving along thinking, why are trees so important? I mean, any open green space is great, right? I could see lots going by at my perfectly legal 65 miles-an-hour set on cruise control. The highway had tons of grass on the central reservation between highway lanes and on the verge to my right. As far as the eye could see.

Then a tree pops up.

“D’oh.”

Three-D. Trees go up. Grass is just a little bit on the ground, but trees go up hundreds of feet in some cases.

That’s how trees win the best oxygen-producer prize. They simply have more surface area to work with. It’s not just “square foot”, but “cubic foot”. A 20 by 20 area produces 400 with grass, add 100 up (adjusted to 50, since trees are not quite as efficient) and suddenly it is 20,000.

Geometry applied to ecology.

Geeking Science: Too Smart

Image courtesy of zirconicusso at FreeDigitalPhotos.net

One of the harder things to write well is someone smarter than you. The top 2% of humanity can be as hard to decipher as a teenager – “What are you thinking? – and yet, we love to write about them. Kind-of like middle-grade and Young Adult (YA) likes to read about people one or two years above them; how do these people who have a slightly different view of the world interact with it?

So many romances feature a super-smart female who falls for the Alpha male. And Urban Fantasies love the tech-genius sidekick trope. With the added time allowing to think things out, a writer can create a portrayal of someone able to think a few steps ahead of those around them. And yet, is this how such a person will act?

Not necessarily.

Dr. Kohlenberg reposted an article from his old website on June 23, 2017: Understanding Very, Very Smart People. It’s been widely shared on educational and entertainment websites including Medium.

Some things to think about when writing the Very Smart are:

  1. The Very Smart are not allowed to talk about it. – In the age where everyone gets to talk about their neurological divergence, talking about the trials of a 140 IQ sounds like bragging instead of problem-solving like when one talks about being on the Spectrum. Thing is a mental outlier is still being a mental outlier even when it is “positive” – trying to figure out how to fit into the larger society doesn’t just happen even when one can process information faster than normal.
  2. Failure is very frustrating. – After twenty years of being the brightest, entering the job market and running into peers can be crazy intimidating. In addition, if one is in a job to push the brain limits, failure becomes real for the first time and the very smart have no experience with this. Often they start avoiding the problem and dumb down their job until failure isn’t going to happen. This is how doctorate holders flip burgers. It isn’t just because the doctorate is in Medieval English Literature.
  3. Depression is more common. – Not only because the difference of being a mental outlier, but because of seeing Too Much, the Very Smart are more prone to depression and hide it a hell of a lot better for a lot longer than most. Because it starts early. They understand more than their age indicates. While a normal eight year old just sees a sunset, a Very Smart eight year old understands the light refraction and sometimes wonders about the pollution adding to the colors. And then starts thinking about how to fix pollution and gets angry when most of their solutions are not possible at their age. Then tired and depressed the older they get when they realized they don’t have the pull to fix all the problems. By age 18, not 40.
  4. Very Smart isn’t knowing All the Things. – Especially among males (who are always more likely to be outliers in anything genetic thanks to less averaging factors in the X against Y DNA), intelligent specialization occurs. Great at Math and Music, not so hot at Social. Political genius can’t figure a checkbook or morality. Know all things Pre-Historic in flora and fauna, but don’t have time to study Current Events.

This is the most common issues seen in books and television – the Genius of Everything – hacker, history expert, and auto mechanic! If you are writing a genius, choose one specialization topic for work and one side interest per decade old.

For example, Computer Hardware Specialist – forty years old – also dabbled in medical field, brain studies, for an AI he was interested in, then again for muscles when he was into robotics. He had taken the violin middle school through college and continues to love classical music and has tickets to the symphony – and can name every Vivaldi piece within the first minute of hearing it. Recently, because of the woman he is dating, he has come to an appreciation of Roller Derby especially the architecture and crowd distribution to maximize sound and fan-fever.

Don’t do all the things. Go deep, not wide in subject matters.

Tony Stark did machines, while Bruce Banner does radiation. And Natalia Romanavoa, languages.

If you want to read the article, you can find it here: (or maybe not, it looks like it has been removed again)

WRITING EXERCISE: Review your body of work. Have you ever written about Very Smart people? How were they realistic, and how did they diverge from reality?

***

In Is the Sky Blue?, we met one of the Ranlo brothers, Eugene, for the first time. We see his failure at work, his emotional quagmire leading to depression at not being able to please his boss like he had his teachers, and his problems with his relationship with Jordan and both of them working at the mental outlier issues. By the way, Eugene is brother to Joe from the what I have nicknamed “the Joe and Cheryl Show,” and Eugene and Joe’s younger brother is mentioned in Memory of a Lifetime. Eugene is the eldest; Joe is the middle. Little bro prankster is unnamed as yet.

I really should return to this family and write out the three romances of the genius brothers and the women who have to deal with them.

Geeking Science: PTSD

Photo by Matt Briney on Unsplash; Cropped and color adjusted by Erin Penn

The human mind has been created to be reprogrammed, to adjust to life changes, community changes, environmental changes. Both the brain (hardware) and mind (software) customize their functions to situations humans face. It is one of our most amazing traits; and it creates some of our greatest tragedies.

Myke Cole tackles the topic of “What PTSD is” with grace. He focuses on the solider, but recognizes that PTSD is a trained response to an ongoing environmental stress – whether governments deciding policy through the lives of teenagers (the most responsive time to brain restructuring) or abuse from loved ones.

Once the rewiring happens, paths are permanently cut off.

That doesn’t mean new ones cannot be created.

Don’t give up.

#HoldOntoTheLight

Neuroplasticity allows the brain to recover from traumatic events, like a stroke (a physical stress) or moving to a completely new country (a mental stress). Humans can learn how entirely new languages, skill sets, and communities. But stress affects thinking and memory. In dangerous situations, the amygdala (the survival section) takes over, moving resources from high-level memory creation and decision making. And “dangerous situations” are interpreted by the brain from physical stress response, such as elevated heart rate, not cold logic.

Chronic and persistence stress rewires our brain. It is how we are built. And just like any learning situation, repetition gets it in the brain good. 

What I am trying to say PTSD is a normal, natural product of how humans function. Whether created by a significant other threatening one emotionally or by being an employee in a position with dangerously irate clients (like a police officer serving warrants), the rewiring will occur and it is okay.

Overcoming this rewriting can be difficult. But the first step is realizing you are not alone. You aren’t the only one. And you aren’t broken beyond repair. It’s fixable, with help. Help, because we are human and humans heal best in social situations. Brain rewiring is learning related, that takes teachers and practice. If you need it, get it. If you recognize the need in others, help them.

To start, maybe read Myke Cole’s article: (link no longer working as of 2/24/2023).

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About the campaign:
#HoldOnToTheLight is a blog campaign encompassing blog posts by fantasy and science fiction authors around the world in an effort to raise awareness around treatment for depression, suicide prevention, domestic violence intervention, PTSD initiatives, bullying prevention and other mental health-related issues. We believe fandom should be supportive, welcoming and inclusive, in the long tradition of fandom taking care of its own. We encourage readers and fans to seek the help they or their loved ones need without shame or embarrassment.

Please consider donating to or volunteering for organizations dedicated to treatment and prevention such as: American Foundation for Suicide Prevention, Hope for the Warriors (PTSD), National Alliance on Mental Illness (NAMI), Canadian Mental Health Association, MIND (UK), SANE (UK), BeyondBlue (Australia), To Write Love On Her Arms (TWLOHA) and the National Suicide Prevention Hotline.

To find out more about #HoldOnToTheLight, find a list of participating authors and blog posts, or reach a media contact, go to http://www.HoldOnToTheLight.com and join us on Facebook https://www.facebook.com/WeHoldOnToTheLight