Distributed feedback (DFB) broad area (BA) lasers with multiple epitaxially stacked active regions and tunnel junctions designed for emission around 900 nm are investigated. DFB BA lasers with a cavity length of 1 mm and different stripe widths are compared in terms of their electro-optical performance and beam quality. The laser with a 200 µm stripe width achieved a high optical pulse power of 100 W in 10 ns long pulses at an injection current of 63 A, resulting in a brightness of 81 MW/cmsr. The optical spectrum of both lasers is centered at around 886 nm, exhibiting a narrow spectral bandwidth of 0.2 nm (64 pm/K).
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http://dx.doi.org/10.1364/OL.510521 | DOI Listing |
Well-designed effective interventions promoting sustainable diets are urgently needed to benefit both human and planetary health. This study evaluated the feasibility, acceptability, and potential impact of a pilot blended digital intervention aimed at promoting sustainable diets. We conducted a series of ABA n-of-1 trials with baseline, intervention, and follow-up phases over the course of a year, involving twelve participants.
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January 2025
Department of Mechanical Engineering, University of British Columbia, 2054-6250 Applied Science Lane, Vancouver, British Columbia V6T 1Z4, Canada.
Natural gas (NG) is a promising alternative to diesel for sustainable transport, potentially reducing GHG and air quality emissions significantly. However, the GHG benefits hinge on managing methane slip, the unburned methane in the exhaust of NG engines, which carries a significant global warming potential. The CH slip from NG engines is highly dependent on engine type and operation, and effective greenhouse gas emission mitigation requires that the actual operation of real-world engines is monitored.
View Article and Find Full Text PDFSmall Methods
January 2025
Research Institute of Frontier Science, Southwest Jiaotong University, Chengdu, 610031, P. R. China.
Commercial 3D zinc foam anodes with high deposition space and ion permeation have shown great potential in aqueous ion batteries. However, the local accumulated stress from its high-curvature surface exacerbates the Zn dendrite issue, leading to poor reversibility. Herein, we have employed zincophilic N-doped carbon@Sn composites (N-C@Sn) as nano-fillings to effectively release the local stress of high curvature surface of 3D Zn foams toward dendrite-free anode in aqueous zinc ion battery (AZIB).
View Article and Find Full Text PDFNurs Educ Perspect
November 2024
About the Authors Adrienne Martinez-Hollingsworth, PhD, MSN, RN, PHN, WAN, is director of research and evaluation, AltaMed Institute for Health Equity, and assistant project scientist, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, California. Dawn Goodolf, PhD, RN, is associate dean, Helen S. Breidegam School of Nursing and Public Health, and associate professor, Moravian University, Bethlehem, Pennsylvania. Nia Martin, PhD, MSN, RN, is assistant professor, Loma Linda University School of Nursing, Loma Linda, California. Linda Kim, PhD, RN, PHN, is research scientist, Department of Nursing Research, and assistant professor of medicine, Cedars Sinai Medical Center, Los Angeles, California. Jennifer Saylor, PhD, APRN, ACNS-BC, is associate dean for faculty and student affairs and associate professor, School of Nursing, University of Delaware, Newark, Delaware. Jennifer Evans, DNP, RN, NC-BC, is assistant dean and associate professor, University of Southern Indiana College of Nursing and Health Professions, Evansville, Indiana. Annette Hines, PhD, RN, is the Executive Director of the Susan S. Morrison School of Nursing, University of St. Thomas. Jin Jun, PhD, RN, is assistant professor, Center for Healthy Aging, Self-Management and Complex Care, College of Nursing, Ohio State University, Columbus, Ohio. The first author received a travel stipend from HRSA 22-109 Health and Public Safety Workforce Resiliency Training Program (U3NHP45414).The authors are grateful to Beth Speidel and Delsa Richards for their engagement and feedback. For more information, contact Adrienne Martinez-Hollingsworth at
Aim: This survey explored nurse leaders' impressions of burnout on college/school of nursing (CON/SON) administrative staff and leadership-facilitated strategies used to promote resilience building/mitigate burnout.
Background: Administrative staff are foundational to the success of a university's CON/SON, yet few studies have explored the impact of burnout in this group.
Method: Cross-sectional survey distributed to associate dean and business officer attendees of the 2022 American Association of Colleges of Nursing, Business Officers of Nursing Schools meeting (summer 2022) (n = 64).
Nanotechnology
January 2025
Anhui Agricultural University, Hefei, 230036, P. R. China, Hefei, 230036, CHINA.
Strain sensing fabrics are able to sense the deformation of the outside world, bringing more accurate and real-time monitoring and feedback to users. However, due to the lack of clear sensing mechanism for high sensitivity and high linearity carbon matrix composites, the preparation of high performance strain sensing fabric weaving is still a major challenge. Here, an elastic polyurethane(PU)-based conductive fabric(GCPU) with high sensitivity, high linearity and good hydrophobicity is prepared by a novel synergistic conductive network strategy.
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