Multiply-charged argon ion irradiation of microfabricated niobium wires
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Modern X-ray detector systems urgently require compact, efficient, and fast data compression schemes to handle the transmission of big data from pixel arrays, enabling frame rates in the MHz regime. Here, in this work, a data compression ASIC that implements a streaming fixed-length lossy compression scheme is introduced and analyzed, proving the feasibility and benefits of on-chip compression. The compression scheme utilizes a vector matrix product logic, which performs a number of floating-point multiplications, additions, and accumulations. The logic is verified, synthesized, and shown to fit in the area resource available for the X-ray detector under study, which comprises 192 × 168 pixels each of 12-bit width, and having a total area of 20 mm× 20 mm, about 2 mm× 20 mm of which are available for the digital logic. Several system architectures, precisions, and compression ratios ranging from 100 to 250 were analyzed to pave the way for on-chip fixed-length compression (e.g., principal component analysis, singular value decomposition) and data reduction (e.g., azimuthal integration) for X-ray and electron detectors.
In 2009, the U.S. Department of Energy / National Nuclear Security Administration’s (DOE/NNSA) Defense Nuclear Nonproliferation (DNN) Program initiated a new nuclear forensics outreach effort under its Confidence Building Measures Program. Little did they know that the timing could not have been better. This article focuses on the early years (2009-2015) of the NNSA’s international nuclear forensics outreach, specifically the efforts and experiences of the women who helped establish this program, building it from a fledgling bilateral effort into an enduring technical capacity provider engaging with dozens of countries and multilateral organizations. At the onset of the program, nuclear forensics was an emerging priority within the U.S. Government and receiving increased focus from international organizations through high-level diplomatic efforts such as the Nuclear Security Summit and Global Initiative to Combat Nuclear Terrorism. Additionally, working-level initiatives were gaining traction through the International Atomic Energy Agency and the Nuclear Forensics International Technical Working Group. Over the next six years, a small team comprised of a uniquely large number of women NNSA federal, contract, and national laboratory staff served as key leaders engaging with the international community to strengthen global technical nuclear forensics capacity and best practices. The program continues today under the Nuclear Smuggling Detection and Deterrence Program as Investigation Support. The experiences shared here detail a unique time period when the new technical discipline of nuclear forensics was beginning to mature and gain international traction. The authors have made every effort to remember history correctly and be as inclusive as possible. A wealth of training, guidance, and exercises documentation was developed in the 2009-2015 timeframe, much of which still serves as the foundation for today’s even more extensive program and community of dedicated technical and diplomatic practitioners.
In these notes, we provide details for two analog Monte Carlo (MC) methods to aid in obtaining stochastically derived information for characterizing nuclear systems– namely the traditional Event Based Monte Carlo (EBMC) method and a method known as the Stochastic Simulation Algorithm (SSA).
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Poster for National Labs Day at Purdue University.
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Use of electronic system of photomultiplier as amplifier of weak ion current in mass spectrometer instruments
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Electron optical imaging system and combination anode-deflection cone for electrostatic image dissector tube - testing and calibration
Primary cosmic ray charge and energy spectra determination for helium through neon during solar minimum
Energetic helium and heavy nuclei detected in solar cosmic ray bursts
Primary cosmic ray charge and energy spectra for helium through oxygen during 1965 minimum solar modulation effect
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Stress concentration in shallow spherical shells determined by method with controlled boundary conditions
Concentrated forces applied to edges of two identical holes in elastic isotropic medium
Parameters in analog /dc/ and digital /single electron pulse count/ modes of processing data from photomultiplier tubes
Electronic excitation of nitrogen beam passed through thin carbon target foil noting spectral lines, unidentified lines and decay times