Cambridge, MA, United States of America

Nancy J Slater Gabriel


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 12(Granted Patents)


Company Filing History:


Years Active: 1985

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1 patent (USPTO):Explore Patents

Title: The Innovations of Nancy J. Slater Gabriel in Ion Implantation Technology

Introduction: Nancy J. Slater Gabriel, an accomplished inventor based in Cambridge, MA, has made significant contributions to the field of semiconductor technology. Her innovative work in ion implantation has advanced the development of ternary compounds and has important implications for electronic devices.

Latest Patents: Nancy holds a patent titled "Dual species ion implantation of ternary compounds based on In-Ga-As." This patent details a method for ion implantation using multiple energy Be⁺ ions to produce p-type regions in n-In₀.₅₃Ga₀.₄₇As. It introduces a simple technique for capless annealing of InGaAs up to 700°C. Moreover, it explains the process of implanting silicon to create n⁺ layers in previously Be-implanted InGaAs epilayers. The results show an impressive active efficiency of 40% for the 50 KeV Be implant, as well as efficiencies of 86% and 38% for the low and high energy Si implants respectively.

Career Highlights: Nancy J. Slater Gabriel works for the United States of America, as Represented by the Secretary of the Navy. Her work aligns closely with military and research applications, where advancements in semiconductor technology are critical. Her pioneering methods in ion implantation reflect her deep understanding of material science and engineering.

Collaborations: Throughout her career, Nancy has collaborated with notable individuals such as Kamal Tabatabaie-Alavi and Abu N. Choudhury. These partnerships have led to innovative advancements in their respective fields, demonstrating the collaborative nature of scientific research and development.

Conclusion: Nancy J. Slater Gabriel's work in ion implantation and semiconductor technology showcases her role as a leading inventor. Her contributions through her patent have the potential to significantly influence future advancements in electronics and material sciences. Her collaboration with talented coworkers further underscores the importance of teamwork in the pursuit of innovation.

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