On the right, an artificial atom generates sound waves consisting of ripples on the surface of a solid. The sound, known as a surface acoustic wave (SAW) is picked up on the left by a “microphone” composed of interlaced metal fingers. According to theory, the sound consists of a stream of quantum particles, the weakest whisper physically possible. The illustration is not to scale. (Credit: Philip Krantz, Krantz NanoArt)
via chalmers
Close-ups of an experiment conducted by John Bush and his student Daniel Harris, in which a bouncing droplet of fluid was propelled across a fluid bath by waves it generated. (Credit: Dan Harris)
via phys
The Smoluchowsi trapdoor is a simple test for any proposed exorcism of Maxwell’s demon. It is immediately obvious that an information based exorcism is of no use. The are no sensors in this simple device that collect information; and there are memory devices that would need erasure if the demon is to return to its original state. (Credit: Hemmo, M.; Shenker)
via aip
Gravity Probe B (GP-B) has measured spacetime curvature near Earth to test related models in application of Einstein’s general theory of relativity. (Credit: S. Hossenfelder, Wiki Commons)
via backreaction
The research group resolved the challenging issue attributed to solid crystals, namely widely spread emission wavelengths, and succeeded in fabricating many single-photon sources that emit photons with nearly identical emission wavelengths. (Credit: National Institute for Materials Science (NIMS))
via innovations-report
C H Figure 1: Acausality: Penrose diagram of a black hole with signature c hange at high curvature (hashed region). In contrast to traditional non-sing ular models, there is an event horizon (dashed line H , the boundary of the region that is determined by backward evolution from future infinity) and a Chauchy horizon (dash-dotte d line C , the boundary of the region obtained by forward evolution of the high-curvature re gion) (Credit: Martin Bojowald)
via arXiv
Giant alien planets known as “hot Jupiters” can induce wobbles in their parent stars that may lead to the wild, close orbits seen by astronomers. This diagram shows the relationship between wobbling stars and the orbital tilt of hot Jupiter planets. (Credit: Cornell University/N.Storch, K.Anderson, D.Lai)
via space
An illustration of the nonreciprocity of the dynamics of light propagating in the forward (a) and the backward (b) direction. (Credit: Nature Photonics)
via phys.org
New observations of the star cluster Messier 54, shown above, reveal that it is just as strangely deficient in lithium as our own galaxy, deepening a mystery about the element’s big bang origins. (Credit: ESO)
via nationalgeographic
This graph shows the distribution of about 20,000 luminous Sloan Digital Sky Survey quasars in the two-dimensional space of broad line width versus FeII strength, color-coded by the strength of the narrow [OIII] line emission. The strong horizontal trend is the main sequence of quasars driven by the efficiency of the black hole accretion, while the vertical spread of broad line width is largely due to our viewing angle to the inner region of the quasar. (Credit: Y. Shen, L. Ho, KIAA)
via skyandtelescope
To see something new, inventor, Raffi Budakian, had to get small — really small. The instrument he uses is as long as a human hair is wide and has the circumference of a virus.(Credit: The Budakian Group)
via perimeterinstitute
“Using a new operating principle called the “hot-electron photothermoelectric effect,” the research team created a device that is “as sensitive as any existing room temperature detector in the terahertz range and more than a million times faster,” says Michael Fuhrer, professor of physics at UMD and Monash University. The above image is a Graphene photothermoelectric detector device fabrication and principle of operation.” (Credit: Nature.com)
via spacedaily
The above sequence depicts a rare supernova explosion. Hubble images (bottom panel) correspond to an artist’s conception (top panel). (Credit: Kavli IPMU / NASA / Gastón Folatelli)
via universetoday
This is a one centimeter by one centimeter graphene film transfer to a silicon wafer with a silicon dioxide top layer. (Credit: Xuesong Li and Weiwei Cai)
via esciencenews
If a particle and its antiparticle pop into being on the event horizon, one gets sucked in. The other gets away. If the antiparticle gets sucked into the black hole, and the particle breaks free, the particle no longer has a chance to annihilate. It is now real, and not virtual. Its presence and energy count in the universe. And real radiation leaking from a black hole means that the black hole itself is slowly shrinking. (Credit: Chandra Observatory, NASA, Inglis-Arkell)
via io9
The U.S. Defense Department has highlighted China’s increasing space capabilities, however, saying China was pursuing activities aimed at preventing its adversaries from using space-based assets during a crisis.(Credit: Jaime FlorCruz – CNN Beijing Bureau Chief)
via reuters
The new planet would be an uninhabitable gas giant at least three times the size of Jupiter, and the distance from the star would be about the same distance that Saturn is from the Sun. This graphic is an artist’s conception of the young massive star HD100546 and its surrounding disk. (Credit: VP. Marenfeld & NOAO/AURA/NSF)
via astronomy
If our understanding is correct, then the universe as a whole could be in a locally stable configuration, but it could also jump to a lower energy state through a process of quantum tunneling. If that happened, the universe would collapse and we’d all go bye bye. So to our best understanding, it is possible for the universe to collapse. (Credit: )
via phys.org
Quarks have one of three “color charges,” which are analogous to the primary colors red, green and blue. Just as an atom strikes a balance between positive and negative electrical charges, particles made of quarks balance colors to reach a neutral state. In the color analogy, that means combining colors to make white. (Credit: Quanta Magazine)
via wired
There is a giant cloud of alcohol in outer space. It’s in a region known as W3(OH), only about 6500 light years away. Unfortunately it is methyl alcohol (commonly known as wood alcohol, though this stuff is not derived from wood), so it isn’t suitable for drinking. There is some ethyl alcohol (the drinkable kind).(Credit: Hubble)
via phys.org
Two tiny satellites escaping on their own doesn’t sound too bad … except it’s not the first time this has happened. On August 23rd, NASA reports that two other CubeSats set themselves free. OK, 4 out of 100 doesn’t sound too bad either … except only 12 have been launched so far, which means a quarter of the CubeSats un-tethered themselves. (Credit: NASA)
via mysteriousuniverse
Classical black holes have “no hair”, meaning that they are simply described by their mass, charge and rotation. Because of this, you could toss an object (with a great deal of entropy) into a black hole, and the entropy would simply go away. (Credit: NASA/Chandra, B. Koberlein )
via phys.org
Two models of the dark matter distribution in the halo of a galaxy like the Milky Way, separated by the white line are shown. The colors represent the density of dark matter, with red indicating high-density and blue indicating low-density. On the left is a simulation of how non-interacting cold dark matter produces an abundance of smaller satellite galaxies. On the right the simulation shows the situation when the interaction of dark matter with other particles reduces the number of satellite galaxies we expect to observe around the Milky Way. (Credit: Durham University)
via forbes
Cassini spied just as many regular, faint clumps in Saturn’s narrow F ring (the outermost, thin ring), like those pictured here, as Voyager did. But it saw hardly any of the long, bright clumps that were common in Voyager images. (Credit: NASA/JPL-Caltech/SSI)
via discovery
Oscillations of photons create an image of frozen light. At first, photons in the experiment flow easily between two superconducting sites, producing the large waves shown at left. After a time, the scientists cause the light to “freeze,” trapping the photons in place. Fast oscillations on the right of the image are evidence of the new trapped behavior. (Credit: Princeton University)
via phys.org
Erlangen-based physicists have sent bright pulses in sensitive quantum states through the window of a technical services room on the roof of the Max Planck Institute for the Science of Light to a building of the University Erlangen-Nürnberg. These types of light flashes are easy to receive even when the sun is shining brightly, unlike the signals of individual photons used to date. (Credit: MPI for the Science of Light)
via sciencecodex
The gravity of a black hole swallows the matter around it. The link between tensor networks and quantum entanglement may prove useful in studying the physics of black holes, some physicists propose. (Credit: M. Weiss, Chandra X -ray Center/NASA)
via sciencenews
Square, cage-shaped molecules called diamondoids (left) linked to soccer-ball shaped buckyballs (right) create a new molecule called a buckydiamondoid, center, in this illustration. These new hybrid molecules may be useful for developing molecular electronic devices in the future. (Credit: Manoharan Lab/Stanford University)
via sciencenews
Machines have surpassed humans in physical strength, speed and stamina. What if they surpassed human intellect as well? Science fiction movies have explored this question. In the classic “2001: A Space Odyssey,” astronaut David Bowman, played by Keir Dullea, struggles for control of the spacecraft against the sentient computer HAL 9000.
via cnn
Schematic sketch of the growth mechanics of a cycloid Note that the reversal in curvature of the second segment above cannot be explained by the previous model of cycloid formation. (Credit: Marshall & Kattenhorn (2005))
via motherboard
“What Mark has done is put his finger on a key ingredient of how space-time is emerging: entanglement,” says Gary Horowitz, who studies quantum gravity at the University of California Santa Barbara. Horowitz says this idea has changed how people think about quantum gravity, though it hasn’t yet been universally accepted. “You don’t come across this idea by following other ideas. It requires a strange insight,” Horowitz adds. “He is one of the stars of the younger generation.”
via dailygalaxy
Researchers have separated the nuclear spin states of water. In para water, the spins (depicted as arrows) of water’s two hydrogen nuclei cancel out. They add up in ortho water. The scientists produced an ultracold, supersonic beam of water molecules — a mixture of para and ortho water — and sent it through an electric deflector (blue device on the left). The deflector acts as a prism for nuclear spin states, separating para and ortho water molecules in space (right). (Credit: Daniel A. Horke, CFEL/DESY)
via phys.org
In this Sunday Sept. 7, 2014, publicly distributed handout photo provided by the Nicaraguan Army shows an impact crater made by a small meteorite in a wooded area near Managua’s international airport and an air force base. Nicaraguan government spokeswoman Rosario Murillo said Sunday that a loud boom heard overnight by residents of the capital was a “relatively small” meteorite that “appears to have come off an asteroid that was passing close to Earth.” (Credit: Nicaraguan Army/AP)
via newsweek
Russian cosmonaut Alexander Skvortsov, performs maintenance and retrieves science experiment packages during a spacewalk on Aug. 18. Skvortsov, along with two other astronauts return to Earth on Sept. 10. (Credit: NASA)
via pbs
As usual for this type of satellite, the Chinese media is referring to the new satellite as ‘a new remote sensing bird that will be used for scientific experiments, land survey, crop yield assessment, and disaster monitoring.’ (Credit: NASA)
via nasaspaceflight