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Laser and Rapid-thermal Crystallization of Low-defect GeSn and SiGeSn Layers for High Performance Infrared Detectors and Integrated Si-based Optoelectronic DevicesSBC: EPITAXIAL LABORATORY INC Topic: AF16AT28
latereThis proposal describes the development of a process to synthesize low defect Ge1-xSnx and SiyGe1-x-ySnx layers on silicon and silicon-on-insulator (SOI) substrates through low thermal budget laser and rapid thermal annealing/crystallization for high performance mid-wave infrared (MWIR) photo detectors and integrated Si-based optoelectronic devices. In phase I, we demonstrated synthesis of G ...STTR Phase II 2018 Department of DefenseAir Force
Development lightmap rendering technology to advance infrared simulation capabilities for training applicationsSBC: CORNERSTONE SOFTWARE SOLUTIONS INC Topic: AF17AT012
Recent technology advances have enabled the simulation community to achieve greater realism in virtual training environments, including physics-based simulated sensor views. As new methods for sensor view generation are developed, the lack of readily available supporting data to populate these specialized techniques limits their implementation. Currently the capability is not available to efficien ...STTR Phase II 2018 Department of DefenseAir Force
An Immersed Boundary Framework for Topology Optimization of Nonlinear Thermoelastic Structures with Internal RadiationSBC: SPECTRAL ENERGIES LLC Topic: AF17AT015
Thermoelastic structures pose a critical challenge to designers due to the inherent design dependence of thermal loading on structural thickness. This is further exacerbated by structural nonlinearity due to in-plane, and more importantly, the out-of-plane bending deformation that further increases the effective loading on the structure. During Phase I of this project, we have added significant ne ...STTR Phase II 2018 Department of DefenseAir Force
SBC: SPECTRAL ENERGIES LLC Topic: AF17AT020
The overall goal of the proposed research program is to develop a ruggedized imaging system capable of visualization and analysis of the particle field and product gases in a multiphase blast. This will be accomplished by combining kHz-MHz-rate burst-mode laser technology with tomographic particle field velocimetry (PFV) and new nonlinear particle tracking methods to resolve dense particle fields. ...STTR Phase II 2018 Department of DefenseAir Force
SBC: TRUVENTIC LLC Topic: AF17AT022
Truventic proposes to design, build and characterize a 5x5 array of fully functional MEMS-based plasmonic infrared scene projector pixels which operate at multiple wavelengths to support hardware-in-the-loop testing of missile seekers, forward looking IR cameras (FLIR), counter measure simulation and tracking systems. The approach avoids known limitations of resistive arrays and provides high dyna ...STTR Phase II 2018 Department of DefenseAir Force
SBC: PLASMONICS INC Topic: AF17AT022
As both the response speed and sensitivity of thermal imagers have improved significantly over recent years, new IRSP systems are needed to provide greater dynamic range and faster response speeds. Addressing these issues, as well as producing a cost effective and modular IRSP system will be critical for providing quality scene projection for the next generation of infrared imagers. To address the ...STTR Phase II 2018 Department of DefenseAir Force
ADA Conformable Wearable Battery-Hybrid Electrical Energy Storage System: A Rechargeable, Safe and High Performance Energy Storage SolutionSBC: ADA TECHNOLOGIES, INC. Topic: A15AT010
ADA Technologies, Inc. proposes to transition our previously developed BB-2590 Hybrid Electrical Energy Storage System (HEESS) architecture into a Conformable Wearable Battery format, or CWB-HEESS (Figure 1). We seek to satisfy a meaningful, Army Program Executive Office (PEO) Soldier need for a rechargeable, safe and high energy CWB. We anticipate the CWB-HEESS will have broad U.S. Dept. of Defen ...STTR Phase II 2018 Department of DefenseArmy
SBC: TDA RESEARCH, INC. Topic: A12AT005
On-site activated decontaminants will revolutionize chemical and biological decon because the activated solution is produced on demand, without the limitations of traditional pre-made mixtures. TDAs system uses electrical activation to convert battery power into reactive chemicals that quickly destroy chemical and biological warfare agents. Prior to activation, the decontaminant mixture can be saf ...STTR Phase II 2018 Department of DefenseArmy
SBC: METNA CO Topic: A17AT016
The NMR relaxometry instrument developed in Phase I project will be refined and thoroughly calibrated for nondestructive evaluation of the structure and properties of polymer-inorganic interfaces. The system design, operation conditions and data acquisition/analysis algorithms will be improved for precise and reliable evaluation of the structure and properties of the interfaces formed between dive ...STTR Phase II 2018 Department of DefenseArmy
SBC: CORNERSTONE RESEARCH GROUP INC Topic: N18AT012
Unmanned underwater vehicles (UUVs) are currently limited in the type of missions they can perform. Limited available power limits which sensors can be run or for how long, and also limits the duration and range of the mission. More efficient propulsion systems would increase the power available to the UUV payload. Improved power distribution systems and control systems would also increase the ava ...STTR Phase I 2018 Department of DefenseNavy