NeonKnight
Protector of the Realm
- Joined
- Aug 30, 2002
- Messages
- 474
I'm glad I donned my lead-lined, quantum-string-knitted booties before stepping in here!
I'm glad you decided to join the SF/Fact thread. You might need those booties.
I'm mainly commenting on the mention of Shermer's singularity prediction. It sounds fun to place a date on such a moment... like predicting the end of the world in 2012. Realistically-speaking, however, so many things have to happen to achieve that point, and as most computer scientists and engineers will attest to, achieving Moore's equation-doubling has required a significant ramping up of effort, technology, resources and money over time, almost to the point of matching Moore's equation itself. The closer we approach that singularity, therefore, the more energy, technology, money, etc, will have to be poured into the effort, on a (probably) exponential scale. Sooner or later, we'll be unable to keep pushing that limit, because the cost will just be too high... and I don't think we'll reach the singularity before then.
Still, we might be able to go far enough to get pretty damned close, as far as we're concerned..
Shermer's article is 8 years old already, he might have a different date in mind by now. But I'm not sure how much he knew about the potential for quantum computational power at that time:
The potential power of quantum computing comes from the possibility of performing a mathematical operation on both states simultaneously. In a two-qubit system it would be possible to compute on four values at once, in a three-qubit system on eight at once, in a four-qubit system on 16, and so on. As the number of qubits increases, potential processing power increases exponentially.
There is, of course, a catch. The mere act of measuring or observing a qubit can strip it of its computing potential. So researchers have used quantum entanglement — in which particles are linked so that measuring a property of one instantly reveals information about the other, no matter how far apart the two particles are — to extract information. But creating and maintaining qubits in entangled states has been tremendously challenging.
“We’re at the stage of trying to develop these qubits in a way that would be like the integrated circuit that would allow you to make many of them at once,” said Rob Schoelkopf, a physicist who is leader of the Yale group. “In the next few years you’ll see operations on more qubits, but only a handful.”
The good news, he said, is that while the number of qubits is increasing only slowly, the precision with which the researchers are able to control quantum interactions has increased a thousandfold.
The Santa Barbara researchers said they believe they will essentially double the computational power of their quantum computers next year.
http://www.nytimes.com/2010/11/09/science/09compute.html
I'm not saying we're anything close to a "singularity" yet. Steven, when you say, "Sooner or later, we'll be unable to keep pushing that limit, because the cost will just be too high...." are you accounting for advances in quantum computers?
Oh: I saw a Popular Science article on the former astronaut who is developing the Plasma Engine Technology. Without having enough info to be able to tell where his biggest hurdles will be, I wish him well. What I'd really like to see, myself, is a better way to just get from ground to orbit. I think the many things we should be doing in Earth orbit (clean-up, Earth and distant observation, habitats and platforms, materials and manufacturing research, etc) actually outweigh trips to other planets, in the short term.
Yes, this guy is really impressive. You may be aware, he is indeed talking about exactly some of the very things you mentioned, including a sort of Triple AAA Space Junk patrol commercial enterprise, to help get Ad Astra Rocket company off the ground.
As far as better ways of getting to orbit, I'm all for that as well. Back in post #52, I linked some ideas for Space elevators. True, we're a long way from that becoming reality, we will need nanotech materials I think to do it right.
Still your thoughts on those ideas would be welcome. I think we're probably at least 2 or 3 decades from gravity well solutions like that, but with the rate of accelerating technology, who really knows?
Of course, if you have any other ideas on how to achieve orbit more easily, I'm all ears.

