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Diamonds were used to create the world's first quantum computer

Diamonds were used to create the world's first quantum computer

The United States Sandia National Laboratory and Harvard University launched the world's first quantum computer. By embedding two silicon atoms in the diamond matrix, the researchers demonstrated all the components for the first time needed to build a single chip that connects to a quantum computer. 

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The research team’s experiments used Concentrated ion beam implanter. The researchers destroyed a single ion that is on some of the exact sites in the diamond substrate and used this implantation method to replace the carbon atoms of the diamond with larger silicon atoms. In the course of the experiment, two carbon atoms on both sides of the silicon atom escaped due to lacking of space. Since then, the remaining silicon atoms occupy a larger space, and through the adjacent non conducting space to buffer the stray current. Although these silicon atoms are located in the solid,their performance is like floating in the gas. Therefore, their electrons do not respond to quantum reactions by other substances.


Before discovering this new approach, scientists had to carry out a series of operations with great efforts to achieve this result. Once these silicon atoms are placed on the diamond substrate, the photons generated by the laser will collide with silicon electrons entering into the next higher atomic energy state. When electrons return to lower energy states, since all atoms are looking for energy levels as low as possible, they emit photons that are quantified based on frequency, density and wave polarization carrying information. At present, scientists have made small quantum computers, several connected small quantum computers may be able to achieve beyond the giant computer performance. This experiment is of great significance to the future of quantum computing.

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Before long,  the world's first Light quantum computer ,beyond the early classic computer, was born in China in May 2017! This marks our country’s field of quantum computer research has entered world-class ranks. It is expected that by 2025, quantum computing will reach the world's fastest supercomputer level, which will be applied to some of the major technical problems that can not be solved at present.


Diamond, as one of the most special materials in natural world, is featured with the highest hardness, low friction coefficient, high elasticity modulus, high thermal conductivity, high insulation class, wide energy gap, great sound propagation rate and favorable chemical stability,etc. In spite of such unique features, the natural diamond has always been existed in the form of gem, with its variability and rareness sharply limiting its application. CVD Diamond film produced by our company, Luoyang Yuxin Diamond Co., Ltd, integrates such physical and chemical properties with lower cost than natural diamond and applicable to be made into various shapes, thus enjoying extensive application prospect in electronic industry, optical field , medical field and mechanical industry.


Before long,  the world's first Light quantum computer ,beyond the early classic computer, was born in China in May 2017! This marks our country’s field of quantum computer research has entered world-class ranks. It is expected that by 2025, quantum computing will reach the world's fastest supercomputer level, which will be applied to some of the major technical problems that can not be solved at present.


Diamond, as one of the most special materials in natural world, is featured with the highest hardness, low friction coefficient, high elasticity modulus, high thermal conductivity, high insulation class, wide energy gap, great sound propagation rate and favorable chemical stability,etc. In spite of such unique features, the natural diamond has always been existed in the form of gem, with its variability and rareness sharply limiting its application. CVD Diamond film produced by our company, Luoyang Yuxin Diamond Co., Ltd, integrates such physical and chemical properties with lower cost than natural diamond and applicable to be made into various shapes, thus enjoying extensive application prospect in electronic industry, optical field , medical field and mechanical industry.