user

NTT Research Upgrades Thinking Around Standard Computational Models with Papers on Photonics, Neural Network and More

PHI Lab Delivers 12 High-Impact Papers, 19 Talks in Three Months Sunnyvale, Calif. – August 10, 2023 – NTT Research, Inc., a division of NTT (TYO:9432), today announced that its Physics & Informatics (PHI) Lab continues to advance basic scientific knowledge in the areas of neural network, photonics and quantum science. In a three-month span, […]

NTT Research Upgrades Thinking Around Standard Computational Models with Papers on Photonics, Neural Network and More Read More »

New Laser-Array Processor Could Vastly Improve AI Computing Efficiency

A new processor that uses light, instead of electrons, has the potential to perform its computations up to 100 times more powerfully and efficiently than existing processors inside machine-learning computer systems. That’s according to a new USC and MIT study published in the journal Nature Photonics. Zaijun Chen of USC, Ryan Hamerly of NTT Research,

New Laser-Array Processor Could Vastly Improve AI Computing Efficiency Read More »

Quantum News Briefs July 31

Quantum approach: NTT DATA used Quantum Annealing technology with superconducting qubits from D-Wave. NTT Research’s CIM (Coherent Ising Machine) then simulated the technology. The comparison was based on the measurement of computational efficiency, accuracy, and scalability indicators. Quantum News Briefs July 31: OQC and Cogniframe partner to enable users, regardless of their level of expertise, to

Quantum News Briefs July 31 Read More »

First-of-its-kind research project stress tests quantum computing for optimised genome assembly

NTT Research’s CIM (Coherent Ising Machine) then simulated the technology. The comparison was based on the measurement of computational efficiency, accuracy and scalability indicators. The same dataset was used as a reference for the concept proof and the comparison. Specifically, the bacteriophage phiX174 genome’s sequencing was synthetically generated, allowing the simulation of different test scenarios

First-of-its-kind research project stress tests quantum computing for optimised genome assembly Read More »

NTT DATA Demonstrates Quantum Computing’s Potential in Genome Assembly and Disease Treatment

 NTT Research’s CIM (Coherent Ising Machine) then simulated the technology. The comparison was based on the measurement of computational efficiency, accuracy, and scalability indicators. The same dataset was used as a reference for the concept proof and the comparison. Specifically, the bacteriophage phiX174 genome’s sequencing was synthetically generated, allowing the simulation of different test scenarios

NTT DATA Demonstrates Quantum Computing’s Potential in Genome Assembly and Disease Treatment Read More »

NTT Research Scientist Creates Model for Discontinuous Learning

Dr. Gautam Reddy quantifies “a-ha” moments in paper published by National Academy of Sciences Sunnyvale, Calif. – July 12, 2023 – NTT Research, Inc., a division of NTT (TYO:9432), today announced that a paper by Physics & Informatics (PHI) Lab Scientist Dr. Gautam Reddy, which makes a novel contribution to the understanding of learning, has been published in

NTT Research Scientist Creates Model for Discontinuous Learning Read More »

EXCLUSIVE: From VR contact lenses to AI telepathy – here are 10 tech breakthroughs predicted to change our lives this CENTURY, according to experts and imagined by AI

In industry, digital twins are simulations of real-world objects fed with data. For example, a digital twin of a wind turbine offers engineers the chance to diagnose problems without visiting the site. A ‘bio digital twin’ might offer doctors the chance to see how a patient would respond to drugs – before prescribing them. Chris

EXCLUSIVE: From VR contact lenses to AI telepathy – here are 10 tech breakthroughs predicted to change our lives this CENTURY, according to experts and imagined by AI Read More »

Your Privacy

When you visit any website, it may store or retrieve information on your browser, mostly in the form of cookies. This information might be about you, your preferences or your device and is mostly used to make the site work as you expect it to. The information does not usually directly identify you, but it can give you a more personalized web experience. Because we respect your right to privacy, you can choose not to allow some types of cookies. Click on the different category headings to find out more and change our default settings. However, blocking some types of cookies may impact your experience of the site and the services we are able to offer.