How Pump-probe Microscopy Uncovers the Fading Process in Historical Paintings

Pump-probe microscopy is a cutting-edge imaging technique that is revolutionizing the way we study historical paintings. By using ultrafast laser...

Physics World recently published an article exploring the fascinating world of pump-probe microscopy and its application in studying the fading...

A groundbreaking new discovery in the field of geometry has challenged a 50-year-old conjecture and unveiled strangely curved shapes that...

A recent discovery in the field of mathematics has sent shockwaves through the academic community, challenging a long-standing geometry conjecture...

A groundbreaking new discovery in the field of geometry has recently challenged a 50-year-old conjecture with the introduction of strangely...

Science communication is a crucial aspect of the scientific community, as it allows researchers to share their findings with the...

Science communication is a crucial aspect of the scientific community, as it allows researchers to share their findings with the...

In the latest edition of Physics World, Sam Illingworth delves into the importance of effective science communication. Illingworth, a lecturer...

Supercomputing has long been at the forefront of technological innovation, pushing the boundaries of what is possible in terms of...

Rob Stockill, the Chief Technology Officer and Co-Founder of QphoX, a leading quantum technology company, has been announced as a...

Egg cells, also known as oocytes, are the female reproductive cells that have the potential to develop into an embryo...

Julien Chosson, a prominent figure in the tech industry, is set to speak at the IQT Vancouver/Pacific Rim Speaker Event...

Julien Chosson, a prominent figure in the world of technology and innovation, is set to speak at the IQT Vancouver/Pacific...

Julien Chosson, a prominent figure in the world of technology and innovation, is set to speak at the IQT Vancouver/Pacific...

Researchers have developed a groundbreaking new technology that could revolutionize the field of medical implants: a battery powered by the...

Researchers have developed a groundbreaking new battery that is powered by the body’s own oxygen, making it suitable for implantation...

A groundbreaking new implantable battery technology has been developed that harnesses the body’s own oxygen supply to generate power, offering...

A groundbreaking new technology has emerged in the field of medical devices – an implantable battery powered by the body’s...

A groundbreaking new study published in Physics World has revealed the development of a revolutionary implantable battery that harnesses the...

Researchers have developed a groundbreaking new technology that could revolutionize the field of medical implants. A team of scientists from...

Researchers have developed a groundbreaking new technology that could revolutionize the field of medical implants. A team of scientists from...

The world of high-performance computing (HPC) is constantly evolving, with new advancements and developments shaping the industry. Recently, the International...

Physics is a fascinating and diverse field that offers a wide range of career opportunities for those with a passion...

Physics is a fascinating field that explores the fundamental principles of the universe, from the smallest particles to the largest...

Physics is a fascinating field that explores the fundamental principles of the universe, from the smallest particles to the largest...

Physics is a fascinating field that explores the fundamental laws of nature and the behavior of matter and energy. It...

Quantum technology is a rapidly evolving field that has the potential to revolutionize computing, communication, and cryptography. In recent years,...

QuEra Computing, a leading quantum computing company, has announced that their Chief Customer Officer (CCO), Yuval Boger, will be speaking...

QuEra Computing’s Chief Customer Officer (CCO) Yuval Boger is set to take the stage at the Quantum + AI 2024...

Yuval Boger, the Chief Commercial Officer of QuEra Computing, is set to speak at the Quantum + AI 2024 Update...

Physics World reports on FASER’s search for dark photons and discovery of neutrinos at the LHC.

The search for dark matter has been one of the most intriguing and challenging quests in modern physics. Scientists have been trying to understand the nature of dark matter for decades, but it remains elusive. However, recent developments at the Large Hadron Collider (LHC) have brought us closer to understanding this mysterious substance.

One of the latest experiments at the LHC is the Forward Search Experiment (FASER), which is designed to search for particles that could be associated with dark matter. FASER is a small detector located along the beamline of the LHC, which is designed to detect particles that are produced when protons collide with each other.

Recently, FASER has made two significant discoveries. The first discovery was the detection of neutrinos, which are subatomic particles that have no electric charge and interact very weakly with matter. Neutrinos are notoriously difficult to detect, but FASER was able to detect them by looking for the faint flashes of light that they produce when they interact with the detector’s material.

The second discovery was the observation of a new type of particle called a “dark photon.” Dark photons are hypothetical particles that are thought to be associated with dark matter. They are similar to regular photons, which are particles of light, but they interact very weakly with matter and are difficult to detect.

The discovery of dark photons is particularly exciting because it provides a new avenue for studying dark matter. If dark photons exist, they could be produced when dark matter particles interact with each other. By detecting these particles, scientists could learn more about the properties of dark matter and how it interacts with other particles.

The FASER experiment is still ongoing, and scientists are continuing to analyze the data that it has collected. However, these early discoveries are already providing valuable insights into the nature of dark matter and the particles that could be associated with it.

Overall, the FASER experiment is an exciting development in the search for dark matter. By detecting neutrinos and dark photons, scientists are getting closer to understanding the properties of this mysterious substance. As more data is collected and analyzed, we may finally be able to unravel the secrets of dark matter and its role in the universe.