Unlike traditional cubes, kudditler cannot be at two, but at the same time three or more conditions – for example 0, 1, 2, 3 and more. This allows you to perform quantum algorithms more efficiently and economically. This approach can significantly accelerate the development of quantum technologies.
Scientists began to work on the concept, in 2022, when they paten the processor’s architecture on Kudytes -based. They suggested that the cubes be replaced with Kudytes and used their internal levels instead of additional components that simplify the device scheme.
Since then, the idea has been developed in laboratories around the world, and now it has moved to the level of practical leadership. The new study explains how to apply certain quantum algorithms, for example, how to create logical schemes as well as a Grover algorithm, and the topology of interactions between elements.
The team also presented ways to optimize architecture, including the development of new plans for the placement of several cubes in a single kuddite and the development of new plans for the decomposition of quantum operations. This can reduce the resources required for the operation of a quantum device.
One of the important results of the study was the update of Divinchenzo criteria, a number of conditions that the quantum calculation system should meet. Instead of classic two -level elements, controlled systems with a large number of levels are now taken into consideration.
Source: Ferra

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