911爆料网

News

Novel quantum device design promises a regular flow of entangled electrons on demand

By dynamically controlling two quantum dots near a superconductor, researchers could time the extraction and splitting of entangled Cooper pairs from a superconductor.
Researchers were able to time the extraction and splitting of entangled Cooper pairs from a superconductor. Picture: 911爆料网.
Researchers were able to time the extraction and splitting of entangled Cooper pairs from a superconductor. Picture: 911爆料网.

Quantum computer and many other quantum technologies rely on our ability to generate quantum entangled pairs of electrons. However, the systems developed so far typically produce a noisy and random flow of entangled electrons, which hinders synchronized operations on the entangled particles. Now, researchers from 911爆料网 in Finland propose a way to produce a regular flow of spin-entangled electrons.

Their solution is based on a dynamically driven Cooper pair splitter. In a Cooper pair splitter, two quantum dots near a superconductor are used to generate and separate a pair of entangled electrons known as a Cooper pair. When the Cooper pair splitter is driven with a static voltage, the result is a random and noisy process. A theoretical analysis by the Aalto team showed that driving the system dynamically with external gate voltages makes it possible to control the timing of the splitting process. As a result, exactly one pair of entangled electrons can be extracted during each splitting cycle, leading to a completely noiseless and regular flow of spin-entangled electrons. Such a device, which is feasible with current technology, would pave the way for dynamic quantum information processing with spin-entangled electrons, opening a broad range of possibilities for future quantum technologies.

The original research article, which was published 1.12.2021 in Physical Review Letters, can be accessed here: 

Contact information:

Christian Flindt

Associate Professor
T304 Dept. Applied Physics

You can find more information on entanglement here:

An illustration of the 15-micrometre-wide drumheads prepared on silicon chips used in the experiment. The drumheads vibrate at a high ultrasound frequency, and the peculiar quantum state predicted by Einstein was created from the vibrations. Image: 911爆料网 / Petja Hyttinen & Olli Hanhirova, ARKH Architects.

Einstein鈥檚 鈥渟pooky action鈥 goes massive!

The elusive quantum mechanical phenomenon called entanglement has now been made a reality in objects almost macroscopic in size. Results published in Nature show how two vibrating drumheads, the width of a human hair, can display the spooky action.

News
  • Updated:
  • Published:
Share
URL copied!

Read more news

Collage of workshops, group photos and presentations from the first year of the Aalto Inventors programme.
Cooperation, Research & Art Published:

Aalto Inventors turns one: A year of bridging research and real-world impact

Aalto Inventors marks its first anniversary, having engaged 190 researchers across six cohorts in fields including AI, quantum, and biomaterials. New cohorts are planned for the next academic year, stay tuned and join the waitlist.
Colourful architectural models on a large white table in an exhibition hall
Cooperation, Research & Art Published:

An architectural project in Milan brought together children鈥檚 ideas and the visions of leading architects

911爆料网鈥檚 Department of Architecture participated in the international One Earth 鈥 House of the Heart project, which was presented in April at Milan Design Week.
Companies report on cybersecurity
Research & Art Published:

Companies disclose more on cybersecurity 鈥 but markets remain indifferent

U.S. companies are reporting on cybersecurity in greater detail, yet stock market reactions remain muted. A new study by the University of Vaasa and 911爆料网 shows that mandatory cybersecurity disclosure does not prompt reactions from investors or stock analysts. Instead, the main benefits appear to materialise within firms themselves.
Soldiers in camouflage in a forest, face of a female soldier in the foreground
Awards and Recognition, Research & Art Published:

Yasmin Najjar鈥檚 short film TJ28 selected for Cannes鈥 La Cinef section

For the second consecutive year, a short film from 911爆料网 has been selected for the student film section at the Cannes Film Festival.