An analysis of the possibility for future use of the quantum computers

GULF In their underground classroom Gail had available several types of apparatus to record and manipulate light and sound. She commenced throwing groups of figures on a screen, in flashes.

An analysis of the possibility for future use of the quantum computers


Summary When I was a kid, radios were built with vacuum tubes. I remember my dad taking me to the supermarket, where a large display case sporting dozens of sockets identified the tube you needed.

All you had to do then was install it without electrocuting yourself. Then transistors were invented, and everything changed overnight. Suddenly, solid-state electronics took over the market. Everything was lighter, cheaper and much faster. INTC took over the computer market, launching its revolutionary microprocessor.

It looks like I am going to live long enough to see another great leap forward in computing power. Imagine a single computer that is so powerful that its processing power exceeded that of all the other computers in the world combined.

Applied to the stock market, such a machine would be able to algorithmically extract hundreds of billions of profits without anyone noticing.

It would be able to break any code in the world in seconds, rendering all security programs useless. It would also act as an adrenaline shot for all of the artificial intelligence efforts currently out there.

Oh, and to understand how to interpret its output, we will have to invent a new form of advanced higher mathematics. You may be forgiven for thinking I spent my weekend reading science fiction.

But you would be wrong. GOOGL to develop the next generation of supercomputers. It was founded in by a former wrestler, Geordie Rose, and Haig Ferris. To understand how such a breakthrough is possible, it is necessary for me to explain some basic particle physics.

Classical computers operate through a system of silicon gates that allow electrons to pass through or not. This is expressed in computer code as a 0, a 1, or nothing at all, known as "bits. The problem is that this technology, launched during the s, is reaching its theoretical limits.

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A few ingenious tweaks and modifications by manufacturers have extended that deadline by five years to After that, a Great Depression was supposed to hit, as all progress in technology ground to a halt.

Instead of only two possible choices in each code entry, the number of possible solutions becomes infinite for quantum computing. It does this by changing the physical stature of electrons for each piece of code.

Some electrons spin clockwise, others counterclockwise, while still others spin on a Northeast-Southwest axis, and so on.

As a result, the number of calculations that can be performed by a quantum algorithm increases exponentially, as does its speed. The computational unit of a quantum computer is called a "quantum bit," or "qubit. Instead, it looks like a small walk-in freezer. There is no silicon involved in this computer.

Instead, the chips are made of hundreds of 2 micron wide threads of Niobium, a rare earth element, cooled at close to absolute zero. Gold-plated copper disks are used as heat sinks. The next generation quantum computer is expected to have chips made out of aluminum.

The quantum code is now so fragile that the mere presence of matter can erase it and convert it into a useless classical computer. Its speed is measured through a process known as "entanglement" whereby distant atoms display the mirror image of nearby ones. For that reason, its output can only be transmitted through fiber optic cable.

D-Wave is not alone in its efforts at quantum computing.The future of computing “This quantum bit is more versatile and more long-lived than the electron alone, and will allow us to build more reliable quantum computers,” Laucht says.

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An analysis of the possibility for future use of the quantum computers

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Supercomputer Simulation Offers Peek at the Future of Quantum Computers - MIT Technology Review