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Projects/Programs

Topic Area
Displaying 1251 - 1275 of 1616

Quantum Transport Measurements

Ongoing
It is necessary to isolate, control, and understand the fundamental physics of exotic states of matter to create nanoengineered systems with the requisite quantum properties for quantum information systems and advanced computing applications. We develop measurement capabilities and design test

Quantum Voltage Project

Ongoing
Researchers in the Quantum Voltage Project develop and disseminate highly accurate instruments that exploit the quantum mechanical properties of superconductive devices known as Josephson junctions (JJs), as well as measurement techniques and best-practices for using these instruments. When a JJ is

Quantum Waveform Metrology

Ongoing
The recent redefinition of the SI was motivated in part by the success of quantum-based electrical standards, such as those based on the Josephson effect. Quantum standards enable the direct realization of physical quantities that are traceable to fundamental constants, invariant with respect to

Radiation Protection: Support of the Navy Dosimetry Program

Ongoing
Since 2010, the U.S. Navy has adopted a personal dosimeter designated as the model DT-702/PD, which was demonstrated to have an improved accuracy, energy discrimination and a lower detection limit than prior Navy designated models such as the DT-5XX/PD and DT-6XX/PD series. This dosimeter is used to

Radiation Sensitivity of Thermoluminescent Dosimeter Sensors

Completed
The radiation sensitivity of a Thermoluminescent Dosimeter (TLD) is defined as dosimeter light output per dose unit. TLD light output depends not only on the sensitivity of the TLD elements (Fig.1) but also on the transparency of the Teflon® used for their encapsulation. The effect of encapsulation

Radiation Thermometry

Ongoing
Radiation thermometers are calibrated using a range of variable-temperature blackbodies. For heatpipe blackbodies and fluid-stirred blackbodies, the temperatures of these blackbodies are determined using platinum resistance thermometers. These blackbodies can also be assigned temperatures using

Radiative Decay of the Neutron

Ongoing
When a neutron decays by its radiative decay (RDK) mode, it produces a photon with a energy spectrum predicted by Quantum Electrodynamics. These RDK photons deposit energy in scintillators which produce voltage pulses in Avalanche Photo Diodes. We are developing nonlinear calibration models to

Radioanalytical Metrology

Ongoing
The Group engages in a wide range of methods applicable to the detection and characterization of nuclear materials. The work can benefit environmental studies, waste remediation, naturally occurring radioactivity detection and characterization and general radioanalytical metrology. Expertise in

Raman Metrology and Instrumentation

Ongoing
Raman spectroscopy/microscopy is a powerful optical technique for rapid, non-destructive, label-free characterization of materials. It works under ambient conditions, often without requirement of any sample preparation. Applications span microelectronics, pharmaceutical, security and fundamental

Reactivity of Nanoparticle Catalysts

Ongoing
Goals: Provide mechanisms for various prototypical electrocatalytic reactions on different metallic surfaces an nanoparticles. Validate the results of DFT calculations versus experimental data. Research Activities: Studying the methanol oxidation reaction on Pt and PtRu surfaces. Studying the effect

Real Fuels

Ongoing
The variability of the price of oil, the need for energy efficiency and pollution minimization has led to increasing interest in alternative fuels. These fuels are structurally and compositionally different than the conventional fuels presently used.  Past work on conventional fuels have established

Real-time Image Intensity Transformation for Surgical Displays

Ongoing
The goal of the project is to develop multiple approaches to fusing dim fluorescent and vivid bright-field images such that surgery-relevant anatomical features are easily perceived. Our approach is based on transforming image intensities in fluorescent surgical microscopy images and blending them

Real-Time Monitoring and Control of Additive Manufacturing Processes

Completed
Objective: Develop process metrology, in-process sensing methods, and real-time process control approaches to maximize part quality and production throughput in Additive Manufacturing (AM). Technical Idea: Additively manufactured metal parts can have many quality issues, such as undesired pores or

Recent Graduate Program

Ongoing
Key Aspects of the Recent Graduate Program: Students hired into this program will be known as "Recent Graduates." Provides student who have recently graduated with valuable experience in the Federal workforce. Paid Position The program lasts for one year. Eligibility: Recent graduates who have

Reconditioning of the 4.45 MN deadweight machine

Completed
The 4.45 MN DWM has been in use in the NIST Force Laboratory since 1965 and is frequently characterized as the largest deadweight force standard in the world. Thousands of measurements through many force calibrations have been performed over the lifespan of the machine. The machine was the

Reduced Ignition and Flame Spread with Nano-Engineered Foam Project

Completed
Objective: By 2015 2, to develop the measurement science that enables (1) design and manufacturing of low fire hazard soft furnishings through commercialization of low heat release, inexpensive, and EHS compliant nanoparticle-based fire retardant foam, (2) to assess the EHS attributes of

Reference Fluid Thermodynamic and Transport Properties Database (REFPROP)

Ongoing
REFPROP is a computer program, distributed through the Standard Reference Data program of NIST, that provides thermophysical properties of pure fluids and mixtures over a wide range of fluid conditions including liquid, gas, and supercritical phases. It contains critically evaluated mathematical

Reference Material Production and Support

Ongoing
Bulk Cryogenic Production Large-batch cryogenic reference materials are produced using a Palla VM-KT Vibrating Cryomill. The mill is pre-cooled to cryogenic temperatures using liquid nitrogen. Frozen material is fed through the inlet funnel to a vibrating chamber containing 26 titanium rods. The

Reference materials for emerging and legacy organic contaminants

Ongoing
The Biochemical and Exposure Sciences Group (BSEG) produces environmental matrix and solution-based reference materials to support the environmental measurement community. These materials assist in identifying legacy organic contaminants such as polychlorinated biphenyls (PCBs)that were commonly

Reference Materials for Plastic Pollution Measurement Science

Ongoing
Microplastic reference materials of different sizes and shapes are required to support environmental studies. Smaller size classes, particularly between 1 µm and 500 µm, are needed to develop microplastic extraction methods, to identify additives in microplastics, and to create in-house spectral