Computer Science: Quantum Computers Physics: Quantum Computing
Published

Researchers show a new way to induce useful defects using invisible material properties      (via sciencedaily.com)     Original source 

Much of modern electronic and computing technology is based on one idea: add chemical impurities, or defects, to semiconductors to change their ability to conduct electricity. These altered materials are then combined in different ways to produce the devices that form the basis for digital computing, transistors, and diodes. Indeed, some quantum information technologies are based on a similar principle: adding defects and specific atoms within materials can produce qubits, the fundamental information storage units of quantum computing.

Chemistry: Thermodynamics Computer Science: Quantum Computers Physics: Quantum Computing
Published

Chaos gives the quantum world a temperature      (via sciencedaily.com) 

Two seemingly different areas of physics are related in subtle ways: Quantum theory and thermodynamics. How can the laws of thermodynamics arise from the laws of quantum physics? This question has now been pursued with computer simulations, which showed that chaos plays a crucial role: Only where chaos prevails do the well-known rules of thermodynamics follow from quantum physics.

Computer Science: Quantum Computers Physics: Quantum Computing
Published

Quantum dots at room temp, using lab-designed protein      (via sciencedaily.com)     Original source 

Quantum dots are normally made in industrial settings with high temperatures and toxic, expensive solvents -- a process that is neither economical nor environmentally friendly. But researchers have now pulled off the process at the bench using water as a solvent, making a stable end-product at room temperature. Their work opens the door to making nanomaterials in a more sustainable way by demonstrating that protein sequences not derived from nature can be used to synthesize functional materials.

Mathematics: Modeling Mathematics: Statistics
Published

AI model proactively predicts if a COVID-19 test might be positive or not      (via sciencedaily.com) 

A new study shows machine-learning models trained using simple symptoms, demographic features are effective in predicting COVID-19 infections.

Computer Science: Quantum Computers Mathematics: Modeling Space: Cosmology
Published

Curved spacetime in the lab      (via sciencedaily.com) 

In a laboratory experiment, researchers have succeeded in realizing an effective spacetime that can be manipulated. In their research on ultracold quantum gases, they were able to simulate an entire family of curved universes to investigate different cosmological scenarios and compare them with the predictions of a quantum field theoretical model.

Computer Science: Quantum Computers
Published

New quantum dots study uncovers implications for biological imaging      (via sciencedaily.com) 

Researchers report the synthesis of semiconductor 'giant' core-shell quantum dots with record-breaking emissive lifetimes. In addition, the lifetimes can be tuned by making a simple alteration to the material's internal structure.

Computer Science: Quantum Computers
Published

New instrument measures supercurrent flow, data has applications in quantum computing      (via sciencedaily.com) 

An extreme-scale nanoscope is beginning to collect data about how pulses of light at trillions of cycles per second can control supercurrents in materials. The instrument could one day help optimize superconducting quantum bits, which are at the heart of quantum computing, a new and developing technology.

Computer Science: Quantum Computers
Published

Changing the color of quantum light on an integrated chip      (via sciencedaily.com) 

Recently, researchers have developed an integrated electro-optic modulator that can efficiently change the frequency and bandwidth of single photons. The device could be used for more advanced quantum computing and quantum networks.

Computer Science: Quantum Computers Physics: Acoustics and Ultrasound
Published

An exotic interplay of electrons      (via sciencedaily.com) 

Water that simply will not freeze, no matter how cold it gets -- a research group has discovered a quantum state that could be described in this way. Experts have managed to cool a special material to near absolute zero temperature. They found that a central property of atoms -- their alignment -- did not 'freeze', as usual, but remained in a 'liquid' state. The new quantum material could serve as a model system to develop novel, highly sensitive quantum sensors.

Computer Science: Quantum Computers Space: Cosmology
Published

Physicists observe wormhole dynamics using a quantum computer      (via sciencedaily.com)     Original source 

Scientists have developed a quantum experiment that allows them to study the dynamics, or behavior, of a special kind of theoretical wormhole.

Computer Science: Artificial Intelligence (AI) Computer Science: Quantum Computers Engineering: Robotics Research
Published

Pulses driven by artificial intelligence tame quantum systems      (via sciencedaily.com)     Original source 

Machine learning drives self-discovery of pulses that stabilize quantum systems in the face of environmental noise.

Computer Science: Quantum Computers Offbeat: Paleontology and Archeology
Published

New quantum computing feat is a modern twist on a 150-year-old thought experiment      (via sciencedaily.com) 

New research demonstrates a 20x improvement in resetting a quantum bit to its '0' state, using a modern version of the 'Maxwell's demon'.

Computer Science: Quantum Computers Energy: Nuclear
Published

Quantum algorithm of the direct calculation of energy derivatives developed for molecular geometry optimization      (via sciencedaily.com) 

Researchers have successfully extended the quantum phase difference estimation algorithm, a general quantum algorithm for the direct calculations of energy gaps, to enable the direct calculation of energy differences between two different molecular geometries. This allows for the computation, based on the finite difference method, of energy derivatives with respect to nuclear coordinates in a single calculation.

Computer Science: Quantum Computers
Published

The entanglement advantage      (via sciencedaily.com) 

Researchers have demonstrated a way to entangle atoms to create a network of atomic clocks and accelerometers. The method has resulted in greater precision in measuring time and acceleration.

Computer Science: Quantum Computers
Published

Achieving a quantum fiber      (via sciencedaily.com) 

Researchers have successfully demonstrated the transport of two-photon quantum states of light through a phase-separated Anderson localization optical fiber.

Computer Science: Quantum Computers
Published

Spin correlation between paired electrons demonstrated      (via sciencedaily.com)     Original source 

Physicists have experimentally demonstrated for the first time that there is a negative correlation between the two spins of an entangled pair of electrons from a superconductor. For their study, the researchers used spin filters made of nanomagnets and quantum dots.

Computer Science: Artificial Intelligence (AI) Computer Science: Quantum Computers
Published

Quantum algorithms save time in the calculation of electron dynamics      (via sciencedaily.com) 

Quantum computers promise significantly shorter computing times for complex problems. But there are still only a few quantum computers worldwide with a limited number of so-called qubits. However, quantum computer algorithms can already run on conventional servers that simulate a quantum computer. A team has succeeded in calculating the electron orbitals and their dynamic development using an example of a small molecule after a laser pulse excitation. In principle, the method is also suitable for investigating larger molecules that cannot be calculated using conventional methods.

Computer Science: Encryption Computer Science: Quantum Computers Mathematics: Puzzles
Published

Microlaser chip adds new dimensions to quantum communication      (via sciencedaily.com) 

With only two levels of superposition, the qubits used in today's quantum communication technologies have limited storage space and low tolerance for interference. Engineering's hyperdimensional microlaser generates 'qudits,' photons with four simultaneous levels of information. The increase in dimension makes for robust quantum communication technology better suited for real-world applications.

Computer Science: Quantum Computers
Published

Grid of quantum islands could reveal secrets for powerful technologies      (via sciencedaily.com)     Original source 

Researchers have created grids of tiny clumps of atoms known as quantum dots and studied what happens when electrons dive into these archipelagos of atomic islands. Measuring the behavior of electrons in these relatively simple setups promises deep insights into how electrons behave in complex real-world materials and could help researchers engineer devices that make possible powerful quantum computers and other innovative technologies.