Quantum News Briefs 16. oktober: Rensselaer Polytechnic Institute begynder installationen af ​​det første IBM Quantum System One nogensinde på et universitetscampus; UofRochester-forskere udvikler kvantefotoniske chips til at erstatte gyrokoper i droner; Kinesiske videnskabsmænd ledet af Pan Jianweiby hævder rekordstort kvantecomputergennembrud; - Inde i Quantum Technology

Quantum News Briefs 16. oktober: Rensselaer Polytechnic Institute begynder installationen af ​​det første IBM Quantum System One nogensinde på et universitetscampus; UofRochester-forskere udvikler kvantefotoniske chips til at erstatte gyrokoper i droner; Kinesiske videnskabsmænd ledet af Pan Jianweiby hævder rekordstort kvantecomputergennembrud; – Inde i Quantum Technology

Quantum News Briefs October 16: Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus;UofRochester researchers developing quantum photonic chips to replace gyrocopes in drones; Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough; - Inside Quantum Technology PlatoBlockchain Data Intelligence. Vertical Search. Ai.
By Sandra Helsel offentliggjort 16. oktober 2023

Quantum News Briefs 16. oktober:

Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus

Quantum News Briefs October 16: Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus;UofRochester researchers developing quantum photonic chips to replace gyrocopes in drones; Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough; - Inside Quantum Technology PlatoBlockchain Data Intelligence. Vertical Search. Ai.On October 13, 2023, Rensselaer Polytechnic Institute (RPI) and IBM held a ceremonial groundbreaking to celebrate the first-ever deployment of an IBM Quantum System One on a university campus.Quantum News Briefs summarizes the announcement.
The event featured a grand reveal of the IBM Quantum System One chandelier, the intricately wired golden structure containing the quantum processor chip. “We are celebrating a new era at RPI,” said RPI President Marty A. Schmidt ’81, Ph.D. “Today’s groundbreaking is an enormous win, not just for RPI, but for the region. It is part of a surge of regional strength in all aspects of computing. Today we are headed even deeper into the future. New York’s Hudson River Valley has the potential to become Quantum Valley.”
The IBM Quantum System One to be deployed at RPI will be powered by the 127-qubit IBM Quantum Eagle processor, with which the company has recently demonstrated the capability to perform utility-scale calculations. IBM defines utility-scale as the point at which quantum computers could serve as scientific tools to explore a new scale of problems that remain intractable for classical methods.
“Today is a monumental day for RPI, IBM, and for the field of quantum computing,” said Darío Gil, Ph.D., Senior Vice President and Director of IBM Research; “Housing an IBM Quantum System One at a university, especially one as rich in creativity and scientific knowledge as RPI, will serve as a cornerstone of pushing the boundaries of quantum computing to the next level. Now, with a quantum computer, RPI will be at the forefront of ushering in a completely new paradigm of computing that offers profound possibilities for the exploration of a range of previously intractable problems across areas such as materials design, sustainability, pharmaceutical development, healthcare and much more.”  Click here to read the original, lengthy announcement on the RPI.edu website.

UofRochester-forskere udvikler kvantefotoniske chips til at erstatte gyrokoper i droner

Quantum News Briefs October 16: Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus;UofRochester researchers developing quantum photonic chips to replace gyrocopes in drones; Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough; - Inside Quantum Technology PlatoBlockchain Data Intelligence. Vertical Search. Ai.Forskere ved University of Rochester udvikler fotoniske chips, der kan erstatte de gyroskoper, der i øjeblikket bruges i ubemandede luftfartøjer eller droner, hvilket gør dem i stand til at flyve hvorhen

GPS
GPS, eller Global Positioning System, er et satellitbaseret navigationssystem, der giver oplysninger om placering og tid hvor som helst på eller i nærheden af ​​jordens overflade. Den består af et netværk af satellitter, jordkontrolstationer og GPS-modtagere, som findes i en række forskellige enheder såsom smartphones, biler og fly. GPS bruges til en lang række applikationer, herunder navigation, kortlægning, sporing og timing, og har en nøjagtighed på omkring 3 meter (10 fod) under de fleste forhold.

” data-gt-translate-attributes=”[{"attribute":"data-cmtooltip", "format":"html"}]">GPS-signaler sidder fast eller er utilgængelige. Quantum News Briefs opsummerer SciTechDaily-meddelelsen den 15. oktober.
Ved at bruge en kvanteteknik kaldet svag værdiforstærkning, sigter forskerne efter at give det samme følsomhedsniveau for optiske gyroskoper i bulk på små, håndholdte fotoniske chips, hvilket potentielt transformerer navigation for droner.
Jaime Cardenas, lektor ved Institut for Optik, modtog en ny National Science Foundation-bevilling til at udvikle chipsene frem til 2026. Cardenas siger, at de optiske fibergyroskoper, der bruges i de mest avancerede droner i dag, indeholder fiberspoler, der er flere kilometer lange eller har begrænset dynamik rækkevidde.
Ifølge Cardenas giver svag værdiforstærkning fordele i forhold til traditionelle metoder, fordi det booster signalet fra en interferometrisk måling uden omkostningerne ved at forstærke flere former for teknisk støj. Imidlertid har tidligere demonstrationer af svag værdiforstærkning krævet komplekse laboratorieopsætninger med præcis justering; Cardenas stræber efter at implementere svag værdiforstærkning på en lille fotonisk chip med en faktorringresonator af høj kvalitet. Klik her for at læse ScitechDaily-artiklen i sin helhed.

Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough

Quantum News Briefs October 16: Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus;UofRochester researchers developing quantum photonic chips to replace gyrocopes in drones; Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough; - Inside Quantum Technology PlatoBlockchain Data Intelligence. Vertical Search. Ai.South China Morning Post reported on October 11 that China scientists say their latest quantum computer has solved an ultra-complicated mathematical problem within a millionth of a second – more than 20 billion years quicker than the world’s fastest supercomputer could achieve the same task. The article claims they’ve increased the number of photons from 76 to 113 in the first two versions, improving to 255 in the latest iteration.
The JiuZhang 3 prototype also smashed the record set by its predecessor in the series, with a one million-fold increase in calculation speed, according to a paper published on Tuesday by the peer-reviewed journal Physical Review Letters.
The research team is led by Pan Jianwei, often referred to as the father of China’s quantum program. a leading scientist in China’s national quantum research programme, from the University of Science and Technology of China at Hefei, in the eastern province of Anhui. Click here to read SCMP in-entirety.

Blaise Pascal [re]Generative Quantum Challenge er i gang for at genskabe bæredygtige løsninger på miljømæssige udfordringer

Quantum News Briefs October 16: Rensselaer Polytechnic Institute begins installation of first-ever IBM Quantum System One on a university campus;UofRochester researchers developing quantum photonic chips to replace gyrocopes in drones; Chinese scientists led by Pan Jianweiby claim record smashing quantum computing breakthrough; - Inside Quantum Technology PlatoBlockchain Data Intelligence. Vertical Search. Ai.Med stigende bekymringer over klimaændringer og digitale løsningers miljømæssige fodaftryk søger den indledende Blaise Pascal [re]Generative Quantum Challenge, et unikt hackathon, der løber fra 5. oktober til 15. november, at bygge bro over kløften. Dedikeret til at skabe løsninger på miljømæssige udfordringer med kvantecomputere, har hackathon høstet overvældende interesse og overskredet de oprindelige kapacitetsgrænser på 700 deltagere. Quantum News Briefs opsummerer denne udvikling.>Udfordringens kernemål: udnytte kvantedatabehandling til håndgribelige, bæredygtige fremskridt. Ved at omfavne filosofien om, at "kvantecomputere er køreplanen mod grønnere beregninger", er deltagere med forskellig baggrund og ekspertise blevet inspireret til at genskabe bæredygtige løsninger.
Interessen for quantum computing og ønsket om at løse verdens hårdeste problemer er eksemplificeret ved et stort antal registreringer og mere end 60 foreslåede projekter. Deltagerne kommer fra over 25 lande og seks kontinenter. Den største interesse kom fra Frankrig, Indien, USA, Storbritannien og Tyskland. Med vægt på inklusivitet og tilgængelighed har hackathonet tiltrukket deltagere med baggrunde lige fra områderne kunstig intelligens og kvantecomputere til marketing og design.
Konkurrerende hold har chancen for at dele en præmiepulje på 50,000€, inklusive en imponerende pris på 15,000€ til topkonkurrenten, der skal afsløres på den sidste demodag, den 15. november. I samarbejde med PASQAL vil deltagerne fordybe sig i avanceret kvanteberegning teknologier, fremme innovation, netværk og udforskning.  Klik her for at læse detaljeret om udfordringen og gennemgå meddelelsen i sin helhed.

Sandra K. Helsel, ph.d. har forsket og rapporteret om grænseteknologier siden 1990. Hun har sin ph.d. fra University of Arizona.

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