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70 Results for 'Design & fabrication'
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Technology
Narrowband, Acoustically Mediated Spintronic Terahertz Emitter
Acoustically mediated spintronic THz emitters in which sound waves, rather than direct laser pulses, give rise to a spin current in a magnetic material via magnetoelastic coupling are provided. The TH...
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Jiamian Hu, Shihao Zhuang | P200099US01
Technology
Spin Transistors Based On Voltage Controlled Magnon Transport In Multiferroic Antiferromagnets
Voltage-controlled spin field effect transistors (“spin transistors”) and methods for their use in switching applications are provided. In the spin transistors, spin current is transported from a ...
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Chang-Beom Eom, Tianxiang Nan, Jonathon Schad | P200170US01
Technology
Flexible Transistors With Near-Junction Heat Dissipation
Flexible transistors and electronic circuits incorporating the transistors are provided. The flexible transistors promote heat dissipation from the active regions of the transistors while preserving t...
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Zhenqiang Ma, Huilong Zhang, Shaoqin Gong | P200154US01
Technology
Integration Of Semiconductor Membranes With Piezoelectric Substrates
Piezoelectrically actuated devices constructed from thin semiconductor membranes bonded directly to piezoelectric substrates are provided. Methods for fabricating these devices are also provided. The ...
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Max Lagally, Abhishek Bhat, Frank Flack, Shelley Scott, Robert Blick | P200105US01
Technology
Arrays Of High-Aspect-Ratio Germanium Nanostructures With Nanoscale Pitch And Methods For The Fabrication Thereof
Methods for fabricating thin, high-aspect-ratio Ge nanostructures from high-quality, single-crystalline Ge substrates are provided. Also provided are grating structures made using the methods. The met...
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Max Lagally, Francesca Cavallo, Vijay Saradhi Mangu | P200069US01
Technology
Self-Assembled Helical Slow-Wave Structures For High-Frequency Signals
Traveling-wave tube amplifiers for high-frequency signals, including terahertz signals, and methods for making a slow-wave structure for the traveling-wave tube amplifiers are provided. The slow-wave ...
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Max Lagally, Matthew Dwyer, Francesca Cavallo, Daniel van der Weide, Abhishek Bhat | P190271US01
Technology
Fault Tolerant Charge Parity Qubit
A quantum computer architecture employs logical qubits that are constructed from a concatenation of doubly periodic Josephson junction circuits. The series concatenation of the doubly periodic Josephs...
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Lev Ioffe, Lara Faoro, Robert McDermott | P180262US02
Technology
Anisotropic Strain-Driven Magnetoelectric Devices
Magnetoelectric devices based on piezoelectric/magnetostrictive bilayers are provided. Also provided are methods of using the devices to modulate or to sense the magnetization of the magnetostrictive ...
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Chang-Beom Eom, Mark Rzchowski, Julian Irwin, Shane Lindemann | P190085US01
Technology
Electroplated Helical Slow-Wave Structures For High Frequency Signals
Traveling-wave tube amplifiers and methods for making slow-wave structures for the amplifiers are provided. The SWSs include helical conductors that are self-assembled via the release of stressed elec...
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Max Lagally, Matthew Dwyer, Daniel van der Weide, Abhishek Bhat, Francesca Cavallo, Divya Prakash | P200232US01
Technology
Semiconductor Quantum Dot Computer-Aided Engineering (CAE) Simulation Tool
With the continued development of semiconductor technology, it is now possible to fabricate nano-scale material structures called Quantum Dots (QDs). The properties of QDs have earned them the charac...
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Wei Li, Samuel Belling, Heather Cihak | T180055US02
Technology
Nitride Based Light-Emitting Diodes with Reduced Efficiency Droop
Blue and UV light-emitting diodes (LEDs) are key to modern, energy-saving lighting and are used in a range of applications including efficient home, farm and building lighting, high-speed networking, ...
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Zhenqiang Ma, Dong Liu | P180227US01
Technology
Large-Area, Nanoperforated Graphene Materials for Semiconducting Applications
Recently, interest and research in graphene has grown rapidly due to its outstanding electrical properties. Graphene, a two-dimensional carbon-based material, has high tensile strength, stiffness, opt...
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Michael Arnold, Padma Gopalan, Myungwoong Kim, Nathaniel Safron | P100012US02
Technology
New Method for Direct Patterning in Block Copolymer Lithography
Most microelectronic devices are fabricated using top-down processes such as photolithography. Current top-down processes face growing limitations as the demand for smaller scale applications increase...
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Padma Gopalan, Eungnak Han | P100296US02
Technology
Vertical Cavity Light Sources Based on Stacked Membranes
Improvements in technologies such as cell phones, laptops and small digital electronics are the result of the increasing capability of electronics and photonics. However, there is a continuing need fo...
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Zhenqiang Ma, Weidong Zhou | P08398US
Technology
Block Copolymers for Sub-10 Nanometer Lithography
Block copolymer (BCP) lithography is one of the most powerful technologies of the digital electronics era, allowing millions of nanoscale components to be fabricated on a single chip.BCPs are made of ...
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Padma Gopalan, Xiang Yu, Myungwoong Kim, Daniel Sweat | P140025US01
Technology
Flexible MOSFET Phototransistors Maximize Light Sensing
Photodetectors convert light signals into electrical signals and are indispensible components in most optoelectronic applications. These devices comprise various designs and materials. In recent years...
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Zhenqiang Ma, Jung-Hun Seo | P160090US01
Technology
Single-Crystal Halide Perovskite Nanowires with Superior Performance
Semiconductor nanowire lasers are promising building blocks in state-of-the-art photonic and optoelectronic devices due to their advantageous properties – including ultracompact size, efficient wave...
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Song Jin, Yongping Fu, Fei Meng | P160053US01
Technology
New Biodegradable Integrated Circuits Signal the Future of E-Waste Management
Electronic waste management remains an ongoing challenge both domestically and abroad. Scrap components of electronics such as computers, cellphones and refrigerators contain high amounts of heavy met...
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Zhenqiang Ma, Yei Hwan Jung, Shaoqin Gong, Tzu-Hsuan Chang | P150290US01
Technology
Flexible Thin-Film Transistors for Mass Production
Flexible electronics such as pliant displays, wearable electronics and new biomedical devices have gained popularity in recent years. Such devices are mounted on a supple plastic support layer and off...
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Zhenqiang Ma, Jung-Hun Seo | P150093US01
Technology
Wrapper Cell for Hierarchical System-on-Chip Testing
Complex integrated circuits must be individually tested during manufacturing. System-on-chip (SoC) circuits combine multiple functional elements on a single substrate. For example, such systems may co...
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Kewal Saluja, Kyuchull Kim | P110103US01
Technology
Ferroelectric Thin Films for Improving Memory Technology
The semiconductor industry constantly is seeking new methods to improve memory speed and efficiency that are compatible with large-scale fabrication processes and environmentally-friendly.Currently, F...
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Chang-Beom Eom, Ho Won Jang | P08062US
Technology
Strain-Tunable Light Emitting Diodes Using Germanium
Germanium (Ge), a group-IV semiconductor material, is crucial to many established and potential technologies. In optoelectronics, Ge has been used as a photodetector material for on-chip data distribu...
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Max Lagally, Jose Sanchez Perez | P140041US01
Technology
Method for Double-Sided Processing of Thin-Film Single-Crystalline Electronics
Future advances in semiconductor electronics for computers will require three-dimensional (3-D) integrated circuits that are not limited by the physics of thin film processing. In addition, flexible e...
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Paul Evans, Hao-Chih Yuan, Guogong Wang, Mark Eriksson, Max Lagally, Zhenqiang Ma | P06047US
Technology
Improved Fabrication of Strained Silicon Multilayer Structures
Chips made of strained silicon (Si) have higher electron mobility than chips made of unstrained Si, enabling the fabrication of faster semiconductor devices. Current methods of producing strained Si r...
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Max Lagally, Michelle Kelly, Donald Savage | P04286US
Technology
Masks for Growing Nanopatterned Polymer Brushes
Polymer brushes are a broad class of materials made of polymer chains tethered at one end to a substrate. These brushes are able to tune and modify surface properties like bioadhesion and wettability....
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Padma Gopalan, Daniel Sweat, Myungwoong Kim, Eungnak Han | P130118US01