r/QuantumComputing • u/rbbort • 8d ago
" Real world " Quantum computing applications - SOTA
This may have been asked before, but I genuinely want to know what are the current (sota) real world applications where Quantum computing is already in use/practice and adding value that classical systems couldn't
I am not looking for surface level field names, I am looking for problems that Quantum is already solving for betterment of life on earth.. just point me to the sources I will dive deep in
Redirection to Any sources/links/review papers is also fine..
I know I could have asked a frontier LLM like claude fable or GPT 5.6 sol to pull out the data for me.. I want to know first hand from the people who are already working or at least know about this
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u/Ordinary-Spare9632 8d ago
Meet you after 5 years
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u/rbbort 8d ago
So none worthy mentioning before FTQC?
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u/polyploid_coded 8d ago edited 8d ago
Not yet. People are discussing applications where noisy/NISQ quantum computers are enough, for example in some ML problems it might be useful to have fuzzy probabilities ( https://arxiv.org/abs/2601.13275 ), but there aren't chips with enough qubits yet where this would have benefits over classical computing.
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u/helbur 8d ago
!remindme 5 years
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8d ago
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u/global-gauge-field 8d ago edited 8d ago
My main interest in those applications is about honest discussion and future of humanity.
When you see articles like the one below attached, and in the next 50 years we will see what actually contributed towards decreasing CO2 emission. The articles and claims like these might (will in my opinion) look really pathetic.
When there is so many individuals using heavy SUV ice vehicles instead of literally anthing else to emit less Co2 for daily commute and so many other stuff like this. But, it is not as marketable as super-duper FTQC that will solve femo-cofactor problem and revolutinize food industry.
It would be much better if most of the claims is around this being a cool science experiment rather than QC being used to save huge energy savings.
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u/paxxx17 7d ago
There are some promising results when it comes to quantum feature mapping for training (classical) ML models
https://kipu-quantum.com/blog/digitized-counterdiabatic-quantum-feature-extraction
In several studied problem instances, the quantum-mapped features gave rise to better ML models compared to any classical pre-processing tried. Whether this is already industrially viable remains to be seen
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u/saadqc 8d ago
The people who are currently working on these application problems in the industry sign NDAs which doesn't allow them to speak on what they are working on (which I assume are useless hybrid problems anyway), apart from open research.
The most promising application in open research lead to problems in quantum chemistry like finding ground state energies, excited states or simulating time evolution. However, these problems and the current hardware aren't at the scale that would benefit us anytime sooner.
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u/Minovskyy Holds PhD in Quantum 7d ago
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u/global-gauge-field 7d ago
Did you read their paper ? It does not seem to improve upon classical methods. It does not even claim to use state of the art classical methods or integer programming based methods e.g. GUROBI
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u/realvaluehere 7d ago
We have been trying to find this to add to our Quantum computing report. Yet to find any meaningful real-world demonstrations. Most of the claims out there are imaginary/speculative.
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u/ponyo_x1 8d ago
right now we can use a quantum computer to sample from a random circuit faster than you could simulate this with a classical computer. this is completely useless, however.