Microsoft Majorna 1 Chip can make a quantum computer combined more powerful than all current computers
Microsoft has unveiled its first quantum processor that uses majorna particles instead of electrons, it is smaller than the palm of one hand and can score up to a million Qables.
Listen to the story

Microsoft has created a success in the world of quantum computing with the launch of its quantum processor called Majorrana 1. Microsoft is definitely not the only tech company working on quantum chips. Last year, Google announced the Willow Chip, which the company claimed that a traditional computer is capable of doing a 10 septilian year (which is 1 after 25 zero). In fact, Intel has created more than one quantum chip, including tunnel falls silicon spin quit chip and pando tree milikelvin quantum research control control chip. IBM called the world’s largest quantum chip as Kondor, and Heron, which is the most performing quantum processor of IBM to date. However, which makes Microsoft’s chip a success is that it uses a whole new position for the architecture of its quantum chip. Instead of using electrons using Google, Intel, IBM and others, Microsoft’s Magerana 1 uses something called Majorrana particles.
Microsoft Mayrana 1 uses the world’s first Topoconductor, which the company says “not in decades, not in decades, will help you feel the quantum computers capable of solving problems on meaningful, industrial-fame.”
In January, Nvidia CEO Jensen Huang said that quantum computers would eventually be “very useful”, but it would take decades to really use. On the other hand, Google CEO Sundar Pichai has predicted that quantum computers that are practically useful are just 5 to 10 years away.
Microsoft Topoconductor describes “as a success type of material that can inspect and control majorna particles to produce more reliable and scalable Qubits”. Qubits are building blocks for quantum computers. The company claims that new types of content will help develop quantum systems that may be “a million quarters’ scale”. “In the same way that the invention of semi -circulars made it possible for today’s smartphones, computers and electronics, topochonductors and new types of chips enable those who provide a route to develop a quantum system that scal Can and are able to deal with the most complex industrial and social problems, ”says Microsoft.
Microsoft says that the new design used in the Majorna 1 quantum chip allows the same processor to have one million Qables, while it can fit your hand. To keep it in perspective, the company says that a quantum computer with a million quits would be far more powerful than all current computers in the world.
“Whatever you are doing in quantum space, it needs a way for a million Quality. If this does not, you are going to hit a wall, before you reach on the scale that you really solve important problems, which inspires us, ”Chetan Nayak, Microsoft Technical Fellow says. “We have actually worked a way for a million.”
Microsoft makes a full new position of the case
“Our leadership has been working on this program for the last 17 years. It is the longest -run -running research program in the company, “Zulfi Alam, corporate vice president of Quantum at Microsoft, states. “After 17 years, we show results that are not just unreliable, they are real. They will originally define how the next stage of the quantum journey is. ,
Topoconductor, or topological superconductor, is a new type of material, which is able to create a completely new status – “not a solid, liquid or gas but a topological position”. This new content is “capable of producing more stable QBIT that is sharp, small and can be controlled digitally”.
For this, Microsoft researchers developed a completely new material stack, composed of indium acenoids and aluminum. The company says that a lot of that material was designed and coined by Microsoft “Atom by Atom”. The idea was to use its special abilities to create new quantum particles called Majorranas and pursue quantum computing. Says Microsoft, “Majorna 1 is reliable by the world’s first topological core powering design, incorporating error resistance at the hardware level that makes it more stable.”