Astronomers have observed a miniature planet, Chariklo, with two rings of ice and pebbles located between Saturn and Uranus. The discovery was made using a new camera at the Danish telescope in Chile, which revealed two thin rings separated by 14 km.
Researchers at the Niels Bohr Institute discovered that imperfect nanostructures can be used to produce 'nanolasers', which is an ultimately compact and energy-efficient light source. The imperfections in photonic crystal membranes result in controlled reflections, amplifying light and enabling efficient laser production.
Researchers at the Niels Bohr Institute developed a new optomechanical method that achieves extreme precision in measuring radio waves by avoiding noise with laser light. The detector can operate at room temperature, reducing the need for expensive cooling measures.
Researchers from the Niels Bohr Institute detected a stream of stars in Andromeda II, revealing a remnant of a merged dwarf galaxy. The findings provide insight into the rare event of low-mass galaxy mergers, which are expected during galaxy formation.
Scientists discovered that massive galaxies in the early universe were formed by explosive star formation triggered by galaxy collisions. This theory contradicts the traditional view that galaxies grew larger over time through constant star formation and mergers.
A young star formed in the Milky Way galaxy underwent an explosive growth, becoming 100 times brighter than its current state within the past 100-1,000 years. This sudden increase was caused by a chemical reaction that enabled the formation of complex molecules like methanol.
Scientists at the University of Copenhagen's Niels Bohr Institute have developed a method that harnesses decay to create entanglement between electrons in atomic systems. By controlling the interactions with their surroundings, researchers can precisely control the energy states of the electrons, leading to perfect entanglement.
Astronomers have observed a monster gamma-ray burst in the relatively nearby universe, revealing a giant star with a mass 20-30 times that of the Sun and rapidly rotating. The burst was so powerful that it could be observed for several months, providing insights into the properties of the original star.
A study by the University of Copenhagen's Niels Bohr Institute reveals common features in user activity on Twitter and stock market transactions. The analysis shows that events in society trigger collective behaviour among large groups, leading to sudden and intense online activity.
Researchers from the Niels Bohr Institute found that adding sugar cane ash to cement makes it stronger, more durable and crumbles less. The ash helps bind water in the cement, saving energy and reducing pollution from cement production.
Researchers have created a method to control quantum bits using resonances in artificial atoms, enabling exponential parallel computation and solving complex tasks. The technique combines classical solid-state physics with atomic physics techniques, allowing for controlled electron spin orientation without measurement.
A team of researchers studied an early galaxy using the ESO Very Large Telescope and Hubble Space Telescope, determining its size, mass, element content, and star formation rate. The study found that the galaxy contained a high proportion of heavier elements, similar to those in the centre and outer parts of the galaxy.
Scientists at the University of Copenhagen successfully teleported quantum information between two glass containers filled with billions of caesium gas atoms. The experiments demonstrated stable results every time, paving the way for future quantum communication networks.
Researchers have found rounded pebbles on Mars that indicate flowing water, with sizes between 4-40mm. The findings suggest a prolonged warm period with flowing streams and a denser atmosphere, potentially making Mars habitable for microbial life.
Researchers have discovered a single nanowire can concentrate sunlight up to 15 times the normal intensity, raising the potential for highly efficient solar cells. The breakthrough could lead to a significant impact on solar cell development and energy extraction.