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Quantum Accelerometer
A quantum accelerometer uses atom interferometry to measure accelerations along a horizontal axis. Quantum accelerometers are able to achieve a combination of sensitivity and stability by exploiting quantum interference. As such, they will be critical components of a quantum inertial navigation unit, which will offer satellite-free navigation with unparalleled long-term accuracy. A phase locked SolsTiS system underpins this setup and provides the extremely low phase noise required to make high sensitivity measurements and dynamic frequency tunability to address multiple atomic transitions.
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Quantum Gravimeter
The quantum gravimeter, the first commercial device of its kind in the UK, uses quantum interference of matter waves to measure the local value of gravitational acceleration, or ‘g’, with very high precision. Objects with different mass cause small fluctuations in the value of g measured on the surface of the Earth. The quantum gravimeter can be used to sense these objects hidden under the surface in a non-intrusive manner.
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Quantum Photonics
designed for the development of Quantum Light Source (QLS) related applications. Contact Optilab for more information.
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Quantum Products
M Squared provides a range of quantum products, including integrated systems (quantum accelerometers, gravimeters and clocks) as well as optical systems and electronics for businesses and institutions globally.
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Quantum Sensors
Apogee offers two types of quantum sensors. The Full-spectrum Quantum Sensors feature an improved detector that provides accurate measurements under all light sources, including LEDs, right out of the box. The Original Quantum Sensor is less expensive and great for measuring all light sources except certain LED colors, where post-measurement correction factors need to be applied to achieve accurate readings.
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Quantum Technology
Our understanding of matter has become ever more detailed over time. Starting from the bulk and macroscopic properties of matter, it was a breakthrough when properties on a microscopic level could be readily viewed and understood.Quantum technologies concern an even smaller scale and seek to exploit the special properties of individual atoms or photons.As the science behind these Quantum properties has become better understood we are now close to being able to harness these effects to produce de...show more -
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Absolute Quantum Gravimeter
The Absolute Quantum Gravimeter is the only quantum gravity sensor available on the market place. Thanks to its disruptive technology, this instrument offers unique features:*Absolute gravity measurement at the µGal level.*Automated Continuous Data Acquisition for several months. No long-term drift.*Excellent immunity to ground vibrations thanks to an active compensation system (no mechanical isolation).*Easy and quick operation : the AQG is ready to measure within 1h (no laser alignment nor mec...show more -
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AC Quantum Voltmeter
are based on a programmable Josephson voltage standard chip and are used for high-precision voltage measurements in the range from dc and ac to kHz frequencies.
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Quantum Laser Systems
By combining the Optical Frequency Comb and multiple ultrastable frequency stabilized lasers in a transportable, rack based system Menlo Systems offers a complete laser system for most demanding applications like optical clocks, quantum computing, and quantum physics experiments based on cold atoms, molecules and ions. The customer can configure the system in terms of laser wavelengths, laser power and frequency accuracy so that it is optimally matched to the application.
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Quantum & Metrology Instruments
Beyond quantum sensors, Exail’s photonics solutions enable real applications in other quantum technology fields. They also enable precise control and transmission of the frequency, phase and amplitude of a laser light through fibered telecommunication links, for metrology applications. The true and deep understanding of Exail teams for the fundamental physics behind its technology explains the absolute quality of its time & frequency reference products.
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Underwater Quantum Sensor
LI-192
The LI-192 Underwater Quantum Sensor measures PAR from all angles in one hemisphere. The LI-192 works in air or underwater at depths up to 560 meters. The measurements are cosine corrected and typically expressed as Photosynthetic Photon Flux Density (PPFD). For simultaneous measurements of downwelling and upwelling PAR, two sensors can be mounted on the 2009S Lowering Frame.
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PAR Quantum Radiometric Probe
LP471PAR02
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400…700 nm), μmol m-²s-¹ measure, opaline quartz diffuser for cosine correction.
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PAR Quantum Radiometric Probe
LP471PAR
Quantum-radiometric probe for measuring the PHOTONS FLOW in the chlorophyll field PAR (photosynthetically Active Radiation 400nm…700 nm), μmol m-²s-¹ measure, cosine correction diffuser.
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Quantum Cascade Laser Sensors
QCL sensors use mid-infrared semiconductor laser sources, either intraband Quantum Cascade Lasers or Interband Cascade Lasers to enable high precision, high accuracy, and selective detection of trace gases such as greenhouse gases and chemical agents with application to a variety of commercial, industrial, defense and environmental problems.
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Quantum Computing Control System
In 2018, Zurich Instruments introduced the first commercial Quantum Computing Control System (QCCS), designed to control more than 100 superconducting and spin qubits. Each component of the QCCS is conceived to play a specific role in qubit control, readout and feedback, and operates in a fully synchronized manner with the other parts of the system. LabOne®, the Zurich Instruments control software, enables fast access to qubit data and facilitates the integration into higher-level software frameworks.
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Quantum Efficiency Measurement Systems
Newest generation of quantum efficiency (yield) measurement tool, which allows the user to determine QE of powders, liquids, solids and films. An optically optimized geometry using an integration hemisphere and low stray light array spectrometer enables world class measurements and new applications.
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Quantum Hall Resistance System
Measurements International Ltd.
Quantum Hall System, System Accuracy to < 0.003 ppm with CCC Model 6200A, System Accuracy to < 0.015 ppm with DCC Model 6020Q, 5 Tesla Standard System Magnet, Stable Controlled Sample Environment, Base Temperature < 3.6 K, Low Operating Costs, Direct Transfer to 100 Ω, 1 kΩ, 10 kΩ, and 100 Ω Standards, System Range 0.1 Ω to 100 kΩ, Graphene Device Values 1 kΩ, 10 kΩ, 12.9064037 kΩ and 100 kΩ, Triple Sample Device Mounting.
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Spherical Underwater Quantum Sensor
LI-193
The LI-193 Spherical Quantum Sensor measures PAR in air or underwater from all directions at depths up to 350 meters. This sensor is useful for studies of phytoplankton, which uses radiation from all directions. The measurement is referred to as Photosynthetic Photon Flux Fluence Rate (PPFFR) or Quantum Scalar Irradiance.
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Quantum Cascade Laser Module for OEM Customers
Mini-QCL™:
The Mini-QCL module is a miniaturized version of Block's LaserTune tunable QCL source, designed for OEM applications. Measuring approximately 1 cubic inch in size, each Mini-QCL module offers a 250 cm-1 tuning range. Modules are available within the same industry-leading tuning range as the full LaserTune instrument of 5.4 - 12.8 microns.
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Superconducting QUantum Interference Device (SQUID) Magnetometer
Quantum Design MPMS®3
Quantum Design's MPMS 3 represents the culmination of 40 years of development and design in the world of SQUID Magnetometry. Providing users with the sensitivity of a SQUID (Superconducting QUantum Interference Device) magnetometer and the choice of multiple measurement modes, the MPMS 3 offers new levels of performance in magnetic research while including those aspects of past Quantum Design SQUID magnetometers that customers have grown to appreciate and depend on.
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Widely Tunable Mid-Infrared Quantum Cascade Laser
LaserTune™
Block Engineering's next generation LaserTune represents a significant leap forward in offering the ultimate mid-IR, pulsed Quantum Cascade Laser (QCL) source to meet the ever challenging requirements of the research community. The fully integrated "single box" concept has been taken to new extremes with a significant reduction in footprint size, saving considerable laboratory bench space. This single box also offers the widest gap-free tuning range available on the market of 5.4 - 12.8 microns. No external power supply or control peripherals are required.
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R&D Solutions From Teledyne LeCroy Quantum Data
Teledyne LeCroy offers a wide variety of products for engineers in the R&D lab. R&D testing entails functional testing for source and sink devices as well as interoperability testing for diagnosing problems between A/V devices. Solutions for silicon chip manufactures are available for both source and sink devices. Quantum Data solutions are available for testing HDMI, MHL, DisplayPort, HDBaseT and 3G-SDI products.
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2- and 4-Mirror Floating Zone Crystal Furnaces
IR Image Furnace
The high-performance, compact IR Image Furnace from Quantum Design offers unsurpassed performance in a convenient, stand-alone design. Rivaling much larger and more costly IR furnaces, it uses the Floating Zone (FZ) method to promote single crystal growth from a polycrystalline rod. This method has been shown to be extremely effective for a wide class of materials. Now, more easily than ever before, you have the ability to synthesize superior quality single crystal specimens in your own laboratory. This furnace is available in both 2- and 4-mirror versions.
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7 Tesla Optical Cryostat
OptiCool®
The OptiCool by Quantum Design is a new optical cryostat using an innovative design that puts the sample volume in the heart of your optical environment. A custom 3.8 inch bore, split-coil, conical magnet offers fields perpendicular to the optical table up to ±7 tesla. The highly integrated design means, even with a magnet, your sample isn’t buried inside a large cryostat, far away from the optics. Seven side optical ports and one top optical port allow for optical access to your sample from a wide array of directions.
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8.1 MP UV Area Scan Camera
GO-8105M-5GE-UV
The GO-8105M-5GE-UV is JAI’s highest resolution UV-sensitive area scan camera. The camera features a state-of-the-art Sony Pregius S sensor with backside illumination (BSI) technology, offering spectral sensitivity well into the UVC region. Quantum efficiency at 200 nm is above 25% and is between 40-50% for nearly all of the UVA and UVB range. A 5GBASE-T GigE Vision interface provides 8.1-megapixel monochrome images at up to 66 fps. The interface automatically adjusts to 2.5GBASE-T or 1000BASE-T speeds depending on the performance capabilities of the network.
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9GS/s 16Bit 8GS Mem 12CH 24 Markers RF AWG Benchtop
P94812B
The benchtop version of the Proteus arbitrary waveform generator series offers up to 12 channels in a 4U, 19” benchtop box. With a 9” touch display and on-board PC the benchtop platform enables users to program the instrument without the need of an external PC. Users can program the instrument from the onboard PC using various programming environments such as MATLAB, LabView, Python, and more. So for synchronized, phase coherent, multi-channel applications such as quantum physics and radar applications the Proteus arbitrary waveform transceiver is an ideal, high performance, and cost effective solution.
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9GS/s 16Bit 8GS Mem 12CH 8 Markers RF AWG Desktop
P94812D
The desktop version of the Proteus arbitrary waveform generator series offers up to 12 channels in a 4U, half 19” dedicated chassis. The compact form size and small footprint save valuable bench space. So for synchronized, phase coherent, multi-channel applications such as quantum physics and radar applications the Proteus arbitrary waveform transceiver is an ideal, space efficient, and cost effective solution.
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9GS/s 16Bit 8GS Mem 4CH 8 Markers RF AWG Benchtop
P9484B
The benchtop version of the Proteus arbitrary waveform generator series offers up to 12 channels in a 4U, 19” benchtop box. With a 9” touch display and on-board PC the benchtop platform enables users to program the instrument without the need of an external PC. Users can program the instrument from the onboard PC using various programming environments such as MATLAB, LabView, Python, and more. So for synchronized, phase coherent, multi-channel applications such as quantum physics and radar applications the Proteus arbitrary waveform transceiver is an ideal, high performance, and cost effective solution
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9GS/s 16Bit 8GS Mem 4CH 8 Markers RF AWG Desktop
P9484D
The desktop version of the Proteus arbitrary waveform generator series offers up to 12 channels in a 4U, half 19” dedicated chassis. The compact form size and small footprint save valuable bench space. So for synchronized, phase coherent, multi-channel applications such as quantum physics and radar applications the Proteus arbitrary waveform transceiver is an ideal, space efficient and cost effective solution.
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9GS/s 16Bit 8GS Mem 8CH 16 Markers RF AWG Benchtop
P9488B
The benchtop version of the Proteus arbitrary waveform generator series offers up to 12 channels in a 4U, 19” benchtop box. With a 9” touch display and on-board PC the benchtop platform enables users to program the instrument without the need of an external PC. Users can program the instrument from the onboard PC using various programming environments such as MATLAB, LabView, Python, and more. So for synchronized, phase coherent, multi-channel applications such as quantum physics and radar applications the Proteus arbitrary waveform transceiver is an ideal, high performance, and cost effective solution.