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New method makes microcombs ten times more efficient

Researchers at Chalmers University of Technology have developed a new method to increase the efficiency of microcombs, raising their efficiency from around 1 percent to over 50 percent. This breakthrough enables high-performance laser technology for various applications in space exploration, healthcare, and other industries.

SourceChalmers University of Technology·JournalNature Photonics·TypeExperimental study·DateSep 20, 2023

3D insights into an innovative manufacturing process

Using a new technique, researchers created the first 3D tomograms of a ceramic object being printed using laser-based powder bed fusion, revealing detailed information about the manufacturing process. The findings will help improve this promising technology and provide valuable insights for future applications.

SourcePaul Scherrer Institute·JournalCommunications Materials·TypeExperimental study·DateSep 19, 2023

Intense ultraviolet-visible-infrared full-spectrum laser

A team of scientists has developed an intense four-octave-spanning ultraviolet-visible-infrared full-spectrum laser source using a cascaded architecture of gas-filled hollow-core fiber, lithium niobate crystal, and chirped periodically poled lithium niobate crystal. The system leverages the synergic action of second-order nonlinear eff...

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateAug 22, 2023
Apple MacBook Pro 14-inch (M4 Pro)

Apple MacBook Pro 14-inch (M4 Pro) powers local ML workloads, large datasets, and multi-display analysis for field and lab teams.

Bridging the "yellow-green gap" - GaN-based LED achieves high-rate Wavelength division multiplexing visible light communication system with three-dimensional quantum well structure

A new GaN-based LED achieves high-rate Wavelength Division Multiplexing (WDM) Visible Light Communication (VLC) system with a three-dimensional quantum well structure. The system can support up to eight independent channels for WDM and achieves a total transmission rate of 31.38Gb/s.

SourceCompuscript Ltd·JournalOpto-Electronic Science·DateAug 16, 2023

SLAC researchers take important step toward developing cavity-based X-ray laser tech

Researchers at SLAC National Accelerator Laboratory have developed a key process for next-gen X-ray lasers, demonstrating the use of synthetic diamond crystal mirrors to steer X-ray pulses around a rectangular racetrack. The achievement marks an important step towards creating brighter and more stable X-ray laser pulses.

SourceDOE/SLAC National Accelerator Laboratory·JournalNature Photonics·TypeExperimental study·DateAug 15, 2023

Measuring communication experiences of families of inpatients unable to make decisions for themselves

Researchers developed two versions of a survey to measure the experience of communication between families of inpatients unable to make decisions for themselves. The five-question survey provides a brief snapshot of the experience, while the 10-item survey adds questions about information and emotional support.

SourceRegenstrief Institute·JournalJournal of Pain and Symptom Management·DateAug 10, 2023

Frosty hydrogen as target

A new technique uses frozen hydrogen as a target for high-power laser pulses, improving proton acceleration efficiency and paving the way for advanced tumor therapy concepts. The method generates multiple proton bunches per second and optimizes the process through AI algorithms.

SourceHelmholtz-Zentrum Dresden-Rossendorf·JournalNature Communications·TypeExperimental study·DateJul 31, 2023
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Broadband quantum-dot frequency-modulated comb laser

A team of scientists has developed a broadband frequency-modulated comb based on advanced quantum-dot laser, generating a record 3-dB optical bandwidth of 2.2 THz. This quasi-continuous-wave FM comb does not deliver strong optical pulses, making it favorable for integrated DWDM systems.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateJul 26, 2023

Laser treatment boosts battery performance

Researchers at KAUST used laser pulses to modify MXene, a promising alternative electrode material, boosting its energy capacity by four-fold. The laser treatment also reduced material's oxygen content and strengthened connections between nanodots and layers, stabilizing structure during charging and discharging.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalSmall·DateJul 24, 2023

The correlation between the structures of bimetallic tartrate complexes in solutions for laser-induced synthesis and sensor characteristics of microbiosensors materials

Researchers discovered bimetallic tartrate complexes with unique structures, formed by insufficient ligand, leading to improved sensor characteristics for microbiosensors. The study showcases the potential of laser-induced chemical liquid phase deposition for creating nanostructures with various applications.

SourceBentham Science Publishers·JournalCurrent Organocatalysis·DateJul 11, 2023

Scientists developed 180% relative bandwidth microwave absorber by ultrafast UV laser

Researchers developed a new approach to create a wideband microwave absorption metamaterial using ultraviolet lasers, achieving high absorption performance and control over electrical and magnetic properties. The process enables mass production of complex structures without post-treatment.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateJul 11, 2023

Researchers demonstrate first visible wavelength femtosecond fiber laser

The team's breakthrough enables the production of bright visible-wavelength pulses in the femtosecond range directly with fiber lasers. This advance has significant implications for various fields, including high-precision ablation of biological tissues, two-photon excitation microscopy, and material processing.

SourceOptica·JournalOptics Letters·DateJul 6, 2023
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Joint research team from Korea and Germany seeks to enhance production efficiency of fuel cells with laser machining technology

A joint Korean-German research team has developed a new laser machining technology for fuel cells that enables simultaneous welding and cutting of thin bipolar plates. The technology uses a scanner with real-time cross-coupling control to improve machining accuracy and reduce costs.

SourceNational Research Council of Science & Technology·JournalMetals·DateJul 4, 2023

F. Ömer Ilday comes to Ruhr University

F. Ömer Ilday brings ultrafast lasers expertise to Ruhr University, focusing on materials science and complex laser-matter interactions. He aims to establish a new center for interdisciplinary collaborations and promote start-ups.

SourceRuhr-University Bochum·DateJun 6, 2023

Non-contact Microsphere ultrafast laser nanopatterning technology

Researchers developed an ultrafast laser processing technology based on non-contact microspheres, realizing <50 nm functional nano-patternings on phase change materials. The method achieves a good balance between working distance and feature size, overcoming the optical diffraction limit.

SourceCompuscript Ltd·JournalOpto-Electronic Advances·DateMay 26, 2023
GQ GMC-500Plus Geiger Counter

GQ GMC-500Plus Geiger Counter logs beta, gamma, and X-ray levels for environmental monitoring, training labs, and safety demonstrations.

ETRI lays the groundwork for convenient and safe drone flight

Established as international standards at the International Organization for Standardization (ISO) meeting in Vienna, Austria, ETRI's 'Unmanned Aircraft Area Network' technology prevents collision risks between drones and supports simultaneous operation of hundreds of drones. The standards cover four detailed technologies: unmanned aer...

SourceNational Research Council of Science & Technology·DateMay 22, 2023

New laser technology developed by EPFL and IBM

Scientists at EPFL and IBM have developed a new type of laser using lithium niobate, enabling precise distance measurements in LiDAR applications. The hybrid integrated tunable laser offers low frequency noise and fast wavelength tuning.

SourceEcole Polytechnique Fédérale de Lausanne·JournalNature·DateMar 15, 2023

Vaginal laser treatment shows promise in treating overactive bladder syndrome

A new study documents the effectiveness of Erbium YAG laser treatment in decreasing daytime urination frequency and urgency, as well as increasing voided volume in women with overactive bladder syndrome. The treatment also shows benefits in reducing vaginal atrophy symptoms.

SourceThe Menopause Society·JournalMenopause·TypeRandomized controlled/clinical trial·DateMar 1, 2023
Creality K1 Max 3D Printer

Creality K1 Max 3D Printer rapidly prototypes brackets, adapters, and fixtures for instruments and classroom demonstrations at large build volume.

Writing on glass and silica indicates novel direction for chiral optical property tailoring

Researchers create novel method for chiral optical property tailoring by employing fs laser 3D direct writing on glass, enabling localized modifications without surrounding damage. The technique utilizes form birefringence and stress field to induce optical chirality, offering a new approach for 3D laser manufacturing.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateFeb 22, 2023

Two-beam ultrafast laser scribing of ultrafine graphene patterns

Scientists develop two-beam ultrafast laser scribing technology to fabricate ultrafine graphene patterns with sub-diffraction feature size. The technique overcomes the diffraction limit barrier, allowing for precise control over patterned structures.

SourceUltrafast Science·JournalUltrafast Science·TypeExperimental study·DateFeb 9, 2023

Understanding laser accelerated electron radiation through terahertz emissions

A team of scientists developed a new model for high-power terahertz emissions from laser pulses, observing multi-mJ THz emission from 100-TW-laser-driven LWFA. The correlation between electron beam properties and THz output energy reveals that low-energy but high-charge electrons can produce stronger terahertz radiation.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateFeb 6, 2023

Powering neutron science

Researchers at Osaka University developed a laser-driven neutron source, enabling extremely rapid elemental analysis. The study found that increasing laser intensity yields neutrons proportional to the fourth power, allowing for faster identification of elements in samples.

SourceOsaka University·JournalPhysical Review X·TypeExperimental study·DateJan 31, 2023
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GHz burst mode femtosecond laser pulses can create unique two-dimensional (2D) periodic surface nanostructures

Researchers demonstrate the ability of GHz burst mode femtosecond laser pulses to create unique two-dimensional (2D) periodic surface nanostructures on silicon substrates. The GHz burst mode enhances ablation efficiency and quality compared to conventional single-pulse mode, enabling the formation of distinctive 2D LIPSS.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateJan 24, 2023

Nearly 50-meter laser experiment sets record in University of Maryland hallway

Researchers at the University of Maryland successfully guided a 45-meter-long beam of light through an unremarkable hallway, pushing the limits of an innovative technique. The team utilized ultra-short laser pulses to create a plasma that heated air, forming a high-density core and enabling efficient light delivery.

SourceUniversity of Maryland·JournalPhysical Review X·DateJan 19, 2023

Ionic liquids' good vibrations change laser colors with ease

Researchers at Brookhaven National Laboratory demonstrate a new color-shifting strategy that relies on interactions between lasers and vibrational energy in ionic liquids. The method offers an efficient and customizable approach to shift laser colors, with applications in science, industry, and medicine.

SourceDOE/Brookhaven National Laboratory·JournalPhysical Review Applied·DateJan 19, 2023

A new, better technology for X-ray laser pulses

Researchers at TU Wien have created a new, simpler method for producing intense, high-energy X-ray pulses using ytterbium lasers and a gas medium. This technique increases the efficiency of X-ray radiation production, allowing for better monitoring of chemical reactions in real-time and more efficient nanostructure production.

SourceVienna University of Technology·JournalACS Photonics·DateJan 18, 2023
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Scientists achieved phonon and photon lasing in optomechanical cavities

Researchers successfully fabricated one-dimensional optomechanical crystals to enable simultaneous phonon and photon lasing, narrowing the linewidth by four orders of magnitude. The findings pave the way for silicon-based photonic and phononic lasers to meet new technologies' demands.

SourceKeAi Communications Co., Ltd.·JournalFundamental Research·DateJan 13, 2023

Tailoring 'hollow' hydrogen molecule generation with two-color, bicircularly polarized laser pulses

A team of researchers has developed an experimental method to manipulate the Rydberg state excitation in hydrogen molecules using bicircular two-color laser pulses. By controlling the photon effect and field effect, they were able to generate Rydberg states while varying the extent to which each effect contributed to the process.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics·DateJan 11, 2023
Apple iPad Pro 11-inch (M4)

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Investigating the laser-induced periodic surface structure (LIPSS) of silicon

The study found that titanium and sapphire lasers produce highly crystalline LIPSS with minimal strain, while free-electron lasers lead to defects but no observable strain. The findings suggest tuning LIPSS properties by manipulating laser parameters, paving the way for cost-effective nanostructured surface fabrication.

SourceNagoya Institute of Technology·JournalScientific Reports·TypeExperimental study·DateJan 9, 2023

UVA research team detects additive manufacturing defects in real-time

A UVA research team developed a real-time detection method for keyhole pore generation in laser powder bed fusion, achieving a 100% prediction rate. This approach expands additive manufacturing capabilities for aerospace and other industries relying on strong metal parts.

SourceUniversity of Virginia School of Engineering and Applied Science·JournalScience·TypeExperimental study·DateJan 6, 2023

Laser drills elongated and crack-free micro-holes in glass

Researchers at CELIA have developed a laser drilling method that creates elongated, crack-free micro-holes in glass. This breakthrough allows for high-aspect ratio holes with smooth inner walls, enabling new applications in microelectronics.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateDec 29, 2022

Standoff coherent Raman spectrometer

Researchers have developed a novel air-laser-based standoff Raman spectrometer with high temporal and frequency resolutions. The device enables remote detection of chemical species in real time, monitoring their rovibronic levels and populations in the frequency domain.

SourceUltrafast Science·JournalUltrafast Science·TypeExperimental study·DateDec 15, 2022
AmScope B120C-5M Compound Microscope

AmScope B120C-5M Compound Microscope supports teaching labs and QA checks with LED illumination, mechanical stage, and included 5MP camera.

Laser microbiopsy is a minimally invasive method to extract tissue samples

Researchers developed a laser-based approach to perform microbiopsies, enabling fast, painless tissue sampling with minimal damage. The novel technique uses laser ablation to extract tiny tissue volumes, which can be analyzed using virtual H&E imaging and other techniques in minutes, not hours.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Biomedical Optics·DateDec 14, 2022

Laser controls ultra-fast liquid switch

Researchers at Ruhr-University Bochum have developed a novel approach to water-based circuits using laser technology. The method creates an ultra-fast liquid switch that can conduct electricity at terahertz frequencies, similar to metals.

SourceRuhr-University Bochum·JournalAPL Photonics·TypeExperimental study·DateDec 14, 2022

Deep-space optical communication demonstration project forges ahead

The NASA Deep Space Optical Communications project has successfully demonstrated a new type of laser system that can transmit large amounts of data, including high-definition images and video, through space. The system uses a combination of flight and ground-based lasers to establish an optical link between spacecraft and Earth.

SourceOptica·DateDec 8, 2022
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Longitudinal field laser processing enabling high aspect ratio 10 nm features produced in sapphire

A team of scientists has developed a novel method to demonstrate a high-purity longitudinal femtosecond laser field, enabling the creation of 10nm features in sapphire with unprecedented resolution. The technique uses an 800nm wavelength femtosecond laser source and spatial light modulators to produce a high-quality annular beam with r...

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateDec 8, 2022

Race to finer and better imaging with structured terahertz light

Researchers investigate generating and performing terahertz structured light using flat photonic elements for object inspection and recognition tasks. Flat photonic elements offer advantages in creating non-diffracting beams that preserve internal structure, enabling high-resolution imaging with minimal background signal.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateDec 6, 2022

More control over plasma accelerators

Researchers have developed a hybrid plasma accelerator that combines two methods for electron acceleration, achieving better stability and higher particle density than single-accelerator systems. This innovation opens up new possibilities for precision X-ray generation and novel applications in fields like medical imaging and ultrafast...

SourceLudwig-Maximilians-Universität München·JournalPhysical Review·DateNov 30, 2022

Thirty years of optical parametric chirped pulse amplification (OPCPA)

The invention of Chirped Pulse Amplification (CPA) in 1985 revolutionized ultrafast laser science. OPCPA, developed by Dubietis et al. in 1992, combined the advantages of CPA with optical parametric amplification, offering high gain and low thermal load. Today, table-top OPCPA systems have reached maturity, producing multi-gigawatt to ...

SourceCompuscript Ltd·JournalOpto-Electronic Advances·DateOct 14, 2022

From chaos to complex order

Researchers from the Institute of Physical Chemistry, Polish Academy of Sciences, recorded double Hopf bifurcation behavior of light during laser operation. They also demonstrated real-time experimental observation of the phenomenon and proposed a new methodology to interpret the observed dynamics.

SourceInstitute of Physical Chemistry of the Polish Academy of Sciences·DateSep 30, 2022
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Researchers demonstrate chemically sensitive lidar method

Researchers have developed a chemically sensitive lidar method that can map and identify the composition of environments, augmenting human interactions and industrial processes. The new technique resolves chemical information by detecting sub-nanometer surface deformations due to photothermal absorption.

SourceOptica·DateSep 21, 2022

High-performance 937-nm laser: see deeper with lower power

A novel 937-nm laser source has been developed for multiphoton microscopy, enabling deep tissue imaging at depths of over 600 µm with only 10 mW of power. This breakthrough technology offers a good balance between sensitivity, penetration depth, and imaging speed.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics Nexus·DateSep 13, 2022

Black children with complex communication needs face instructional deficits

A new study reveals that Black children with complex communication needs receive significantly less AAC-based instruction than their white counterparts. Research examined two waves of data from 78 children and found that only 29% of Black students received 90 minutes or more of AAC instruction per week, compared to 63% of white students.

SourcePenn State·JournalAmerican Journal of Speech-Language Pathology·DateSep 8, 2022
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Taking solar-powered lasers to new heights with four-mirror pumping

Scientists have developed a new solar-powered laser with improved conversion efficiency, enabling more stable and efficient space-based energy generation. The design features four mirrors and laser rods, allowing for precise control over the pump cavity and minimizing thermal stress effects.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Photonics for Energy·DateSep 7, 2022

Fewer unknowns in the laser nanosynthesis of composites

Researchers used laser melting to produce composite particles with sizes ranging from 400 to 600 nanometers. They discovered how to determine the critical size of particles that begin to change under laser light, and found that larger particles reach lower temperatures.

SourceThe Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of Sciences·JournalScientific Reports·DateSep 1, 2022

Pulsed laser synthesis of advanced materials for diverse photo- and electrocatalytic applications

Researchers develop pulsed laser-assisted synthetic route to create metal nanoparticles with high purity, eliminating toxic by-products and requiring less energy and time. This technique enables the production of non-toxic, highly functional nanomaterials for various energy and environmental applications.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateAug 21, 2022

Terahertz generation from laser-induced plasma

The article reviews the physics and progress of THz generation from laser-induced plasmas, highlighting three scenarios in air, liquid, and solid configurations. Strong terahertz generation via plasma is discussed with challenges and future perspectives.

SourceCompuscript Ltd·JournalOpto-Electronic Science·DateAug 10, 2022
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Over 20 J THz laser pulse generated at 1 kHz in gas media

Researchers achieved a breakthrough in generating terahertz waves with a conversion efficiency of 0.35% using a dual-color femtosecond laser filamentation technique. The study investigated the influence of ambient gas species on THz generation efficiency and demonstrated improved performance in argon gas.

SourceCompuscript Ltd·JournalOpto-Electronic Advances·DateAug 10, 2022