Challenge in the Next Ten Years – Quantum Computing

For many people, these three things will bring us incredible challenges in the coming years: quantum computing, generalized artificial intelligence, and large-scale space travel will all be there. For now, quantum computing is on the verge of changing the world we live in forever, while the other two things are still in their infancy. In comparison, the biggest challenge in the next ten years, which is closer to us, is quantum computing.

Google and IBM, as well as other major players in the technology field, have proven the immediacy of quantum computing. They have invested a lot of money in quantum computing and are committed to creating a quantum computer that can surpass conventional computers. If this goal is achieved, dozens of long-standing problems are suspected to be suddenly solved by quantum computing-from curing Alzheimer’s disease and other previously incurable diseases to more accurately predicting financial markets.

However, unfortunately, as we approach a new era of solving technical problems, we will also face new network security issues because our current protective measures are outdated. Although this concern will not outweigh the huge benefits of quantum computing, every step needs to be carefully considered.

On this basis,I want to search for a scalable method of entanglement of the qubits. This element of the process allows a quantum computer to take into account all of the variables and their relationships when addressing a problem, making feats like predicting effects of climate change and creating life-saving medications possible.

Thus far, the focus has been on methods of facilitating entanglement that require extreme conditions, such as near absolute zero temperature ranges, to make quantum computing a reality.This has been necessary up to this point as our understanding of this groundbreaking technology grows. However, this is not feasible as a large-scale solution because of the cost and resources associated with maintaining those incredibly low temperatures. If quantum computing is to accomplish all of the life-changing feats it has the potential to, it will need to be accessible enough to be used by all the industries in question, both to use to solve those problems and to defend against cyber attacks in the process.

I would approach my research with the goal of offsetting the need for extreme conditions by either size or mechanical complexity. I would investigate different possibilities for preserving the immense power of quantum computing as the processes are scaled. This is a vital facet of the research to ensure quantum computing does not remain yet another form of technology available only to the wealthiest industries and therefore not used to its fullest potential.

Information from Stanford Advanced Materials.

Published by Julissa Green

Stanford Advanced Materials (SAM) Corporation is a global supplier of various sputtering targets such as metals, alloys, oxides, ceramic materials.

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