PRESS-NEWS.org - Press Release Distribution
PRESS RELEASES DISTRIBUTION

Manchester scientists found novel one-dimensional superconductor

2024-04-24
(Press-News.org) In a significant development in the field of superconductivity, researchers at The University of Manchester have successfully achieved robust superconductivity in high magnetic fields using a newly created one-dimensional (1D) system. This breakthrough offers a promising pathway to achieving superconductivity in the quantum Hall regime, a longstanding challenge in condensed matter physics.

Superconductivity, the ability of certain materials to conduct electricity with zero resistance, holds profound potential for advancements of quantum technologies. However, achieving superconductivity in the quantum Hall regime, characterised by quantised electrical conductance, has proven to be a mighty challenge.

The research, published this week (25 April 2024) in Nature, details extensive work of the Manchester team led by Professor Andre Geim, Dr Julien Barrier and Dr Na Xin to achieve superconductivity in the quantum Hall regime. Their initial efforts followed the conventional route where counterpropagating edge states were brought into close proximity of each other. However, this approach proved to be limited.

"Our initial experiments were primarily motivated by the strong persistent interest in proximity superconductivity induced along quantum Hall edge states," explains Dr Barrier, the paper's lead author. "This possibility has led to numerous theoretical predictions regarding the emergence of new particles known as non-abelian anyons."

The team then explored a new strategy inspired by their earlier work demonstrating that boundaries between domains in graphene could be highly conductive. By placing such domain walls between two superconductors, they achieved the desired ultimate proximity between counterpropagating edge states while minimising effects of disorder.

"We were encouraged to observe large supercurrents at relatively ‘balmy’ temperatures up to one Kelvin in every device we fabricated," Dr Barrier recalls.

Further investigation revealed that the proximity superconductivity originated not from the quantum Hall edge states propagating along domain walls, but rather from strictly 1D electronic states existing within the domain walls themselves. These 1D states, proven to exist by the theory group of Professor Vladimir Fal'ko’s at the National Graphene Institute, exhibited a greater ability to hybridise with superconductivity as compared to quantum Hall edge states. The inherent one-dimensional nature of the interior states is believed to be responsible for the observed robust supercurrents at high magnetic fields.

This discovery of single-mode 1D superconductivity shows exciting avenues for further research. “In our devices, electrons propagate in two opposite directions within the same nanoscale space and without scattering", Dr Barrier elaborates. "Such 1D systems are exceptionally rare and hold promise for addressing a wide range of problems in fundamental physics."

The team has already demonstrated the ability to manipulate these electronic states using gate voltage and observe standing electron waves that modulated the superconducting properties.

“It is fascinating to think what this novel system can bring us in the future. The 1D superconductivity presents an alternative path towards realising topological quasiparticles combining the quantum Hall effect and superconductivity,” concludes Dr Xin. This is just one example of the vast potential our findings holds."

20 years after the advent of the first 2D material graphene, this research by The University of Manchester represents another step forward in the field of superconductivity. The development of this novel 1D superconductor is expected to open doors for advancements in quantum technologies and pave the way for further exploration of new physics, attracting interest from various scientific communities.

END


ELSE PRESS RELEASES FROM THIS DATE:

Tumor cells evade the immune system early on: Newly discovered mechanism could significantly improve cancer immunotherapies

Tumor cells evade the immune system early on: Newly discovered mechanism could significantly improve cancer immunotherapies
2024-04-24
Tumors actively prevent the formation of immune responses by so-called cytotoxic T cells, which are essential in combating cancer. Researchers at the Technical University of Munich (TUM) and the Ludwig-Maximilians-Universität München (LMU) Hospital have now uncovered for the first time how this exactly happens. The study in the journal Nature provides rationales for new cancer immunotherapies and could make existing treatments more effective. A second paper in Nature confirms the findings. In cancer, tumors often impair the body's immune response. For example, they can prevent immune cells from perceiving cancer cells as a threat or render them inactive. Immunotherapies aim ...

Children with skin diseases suffer stigma, bullying and depression

2024-04-24
  ·  73% of children with skin disease experience stigma and poor quality of life ·  ‘Chronic skin conditions can be tremendously life-altering’ ·  Shame during childhood can affect them throughout their lives, dermatologist says CHICAGO --- The majority of children and teens with chronic skin diseases such as acne, eczema, psoriasis, alopecia areata (hair loss) and vitiligo (pigment loss) feel stigmatized by peers for their condition and are sometimes bullied, reports a new Northwestern Medicine study. As a result, these children have a ...

A novel universal light-based technique to control valley polarization in bulk materials

A novel universal light-based technique to control valley polarization in bulk materials
2024-04-24
Electrons inside solid materials can only take certain values of energy. The allowed energy ranges are called “bands” and the space between them, the forbidden energies, are known as “band-gaps”. Both of them together constitute the “band structure” of the material, which is a unique characteristic of each specific material. When physicists plot the band structure, they usually see that the resulting curves resemble mountains and valleys. In fact, the technical term for a local energy maximum or minimum in the bands is called a “valley”, and the field which studies and exploits how electrons in the material ...

Vast DNA tree of life for flowering plants revealed by global science team

2024-04-24
Images The most up-to-date understanding of the flowering plant tree of life is presented in a new study published today in the journal Nature by an international team of 279 scientists, including three University of Michigan biologists.   Using 1.8 billion letters of genetic code from more than 9,500 species covering almost 8,000 known flowering plant genera (ca. 60%), this achievement sheds new light on the evolutionary history of flowering plants and their rise to ecological dominance on Earth.   Led by scientists at the Royal Botanic Gardens, Kew, the research team believes ...

Mini-colons revolutionize colorectal cancer research

Mini-colons revolutionize colorectal cancer research
2024-04-24
As our battle against cancer rages on, the quest for more sophisticated and realistic models to study tumor development has never been more critical. Until now, research has relied on animal models and simplified cell culture methods, which are valuable but cannot fully capture the complex interplay of factors involved in tumor development. Even newer, more advanced models for studying cancer, such as organoids – tiny, lab-grown versions of organs – do not faithfully replicate the cell behaviors and tissue architectures seen in actual tumors. This gap has significantly hindered our understanding ...

Lead-vacancy centers in diamond as building blocks for large-scale quantum networks

Lead-vacancy centers in diamond as building blocks for large-scale quantum networks
2024-04-24
Much like how electric circuits use components to control electronic signals, quantum networks rely on special components and nodes to transfer quantum information between different points, forming the foundation for building quantum systems. In the case of quantum networks, color centers in diamond, which are defects intentionally added to a diamond crystal, are crucial for generating and maintaining stable quantum states over long distances. When stimulated by external light, these color centers in diamond emit photons carrying information about their internal electronic states, especially the spin states. The interaction between the emitted photons and the ...

JMIR Rehabilitation and Assistive Technologies announces theme issue on participatory methods in rehabilitation research

JMIR Rehabilitation and Assistive Technologies announces theme issue on participatory methods in rehabilitation research
2024-04-24
JMIR Publications invites submissions to a new theme issue titled “Incorporating Participatory Methods in Developing, Implementing, and Evaluating Rehab Interventions and Assistive Technologies” in its premier, open access journal JMIR Rehabilitation and Assistive Technologies (JRAT).    JRAT is a peer-reviewed journal indexed in PubMed and PubMed Central, SCOPUS, DOAJ, Web of Science, Sherpa Romeo, and EBSCO and EBSCO Essentials. This theme issue aims to showcase research that actively engages patients, caregivers, and other stakeholders (knowledge users) ...

SwRI’s Dr. Marc Janssens recognized for role in establishing cone calorimeter fire testing

SwRI’s Dr. Marc Janssens recognized for role in establishing cone calorimeter fire testing
2024-04-24
SAN ANTONIO — April 24, 2024 — Southwest Research Institute’s Dr. Marc Janssens was named a “DiNenno Prize Laureate” for his role in the widespread adoption of the cone calorimeter, a fire-testing tool that accurately measures heat release and material flammability. The National Fire Protection Association® recognized the cone calorimeter with the 2024 Philip J. DiNenno Prize for its lasting impact on fire safety. Dr. Vytenis Babrauskas, a co-recipient of the prize, developed the cone ...

Modeling broader effects of wildfires in Siberia

Modeling broader effects of wildfires in Siberia
2024-04-24
As wildfires in Siberia become more common, global climate modeling estimates significant impacts on climate, air quality, health, and economies in East Asia and across the northern hemisphere. The global effects of increasing wildfires in Siberia have been modeled by researchers at Hokkaido University and colleagues at the University of Tokyo and Kyushu University. The results, published in the journal Earth’s Future, suggest significant and widespread effects on air quality, climate, health, and economics under the most extreme wildfire scenarios. The authors performed global numerical simulation experiments to evaluate how the increased intensity of wildfires ...

Researchers find oldest undisputed evidence of Earth’s magnetic field

Researchers find oldest undisputed evidence of Earth’s magnetic field
2024-04-24
A new study, led by the University of Oxford and MIT, has recovered a 3.7-billion-year-old record of Earth’s magnetic field, and found that it appears remarkably similar to the field surrounding Earth today. The findings have been published today in the Journal of Geophysical Research. Without its magnetic field, life on Earth would not be possible since this shields us from harmful cosmic radiation and charged particles emitted by the Sun (the ‘solar wind’). But up to now, there has been no reliable date for when the modern magnetic field was first established.    In the new study, the researchers examined ...

LAST 30 PRESS RELEASES:

Survey of US parents highlights need for more awareness about newborn screening, cystic fibrosis and what to do if results are abnormal

Outcomes of children admitted to a pediatric observation unit with a psychiatric comanagement model

SCAI announces 2024-25 SCAI-WIN CHIP Fellowship Recipient

SCAI’s 30 in Their 30’s Award recognizes the contributions of early career interventional cardiologists

SCAI Emerging Leaders Mentorship Program welcomes a new class of interventional cardiology leaders

SCAI bestows highest designation ranking to leading interventional cardiologists

SCAI names James B. Hermiller, MD, MSCAI, President for 2024-25

Racial and ethnic disparities in all-cause and cause-specific mortality among US youth

Ready to launch program introduces medical students to interventional cardiology field

Variety in building block softness makes for softer amorphous materials

Tennis greats Chris Evert and Martina Navratilova honored at A Conversation With a Living Legend®

Seismic waves used to track LA’s groundwater recharge after record wet winter

When injecting pure spin into chiral materials, direction matters

New quantum sensing scheme could lead to enhanced high-precision nanoscopic techniques

New MSU research: Are carbon-capture models effective?

One vaccine, many cancers

nTIDE April 2024 Jobs Report: Post-pandemic gains seen in employment for people with disabilities appear to continue

Exploring oncogenic driver molecular alterations in Hispanic/Latin American cancer patients

Hungry, hungry white dwarfs: solving the puzzle of stellar metal pollution

New study reveals how teens thrive online: factors that shape digital success revealed

U of T researchers discover compounds produced by gut bacteria that can treat inflammation

Aligned peptide ‘noodles’ could enable lab-grown biological tissues

Law fails victims of financial abuse from their partner, research warns

Mental health first-aid training may enhance mental health support in prison settings

Tweaking isotopes sheds light on promising approach to engineer semiconductors

How E. coli get the power to cause urinary tract infections

Quantifying U.S. health impacts from gas stoves

Physics confirms that the enemy of your enemy is, indeed, your friend

Stony coral tissue loss disease is shifting the ecological balance of Caribbean reefs

Newly discovered mechanism of T-cell control can interfere with cancer immunotherapies

[Press-News.org] Manchester scientists found novel one-dimensional superconductor