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| 1 | Subtotal Parathyroidectomy in Renal Failure: Still Needed after All These Years显示文摘 | P. Anthony Decker Eric P. Cohen Kara M. DoffekB.S. Blake A. Ashley Mary E. Bienemann Yong Ran Zhu Mark E. Adams Stuart D. Wilson Michael J. Demeure | 2001 | World Journal of Surgery2001,,6: | 1 |
| 2 | 大型铝铸造车间采用圆形炉的原因显示文摘介绍铸造车间用的熔铝设备的两种炉型——圆形炉和矩形炉,着重分析了两种熔铝炉装料过程的难易程度,论证了圆形炉生产效率高、能源消耗低,是大型铸造车间的标准配置。 | ERIC Blake | 2012 | 轻合金加工技术2012,40,4: | 1 |
| 3 | Dielectrophoretic concentration and separation of live and dead bacteria in an array of insulators显示文摘 | BLANCA H L BLAKE A S ERIC B C | 2004 | Analytical Chemistry2004,76,6: | 1 |
| 4 | Enhancement of THz generation in LiNbO_(3) waveguides via multi-bounce velocity matching显示文摘To realize the full promise of terahertz polaritonics(waveguide-based terahertz field generation,interaction,and readout)as a viable spectroscopy platform,much stronger terahertz fields are needed to enable nonlinear and even robust linear terahertz measurements.We use a novel geometric approach in which the optical pump is totally internally reflected to increase the distance over which optical rectification occurs.Velocity matching is achieved by tuning the angle of internal reflection.By doing this,we are able to enhance terahertz spectral amplitude by over 10x compared to conventional single-pass terahertz generation.An analysis of the depletion mechanisms reveals that 3-photon absorption and divergence of the pump beam are the primary limiters of further enhancement.This level of enhancement is promising for enabling routine spectroscopic measurements in an integrated fashion and is made more encouraging by the prospect of further enhancement by using longer pump wavelengths. | Blake S.Dastrup Eric R.Sung Frank Wulf Clara Saraceno Keith A.Nelson | 2022 | Light(Science & Applications)2022,11,12: | 0 |
| 5 | A review of recent advances(2018–2021)on tropical cyclone intensity change from operational perspectives,part 1:Dynamical model guidance显示文摘This review summarizes the rapporteur report on tropical cyclone(TC)intensity change from the operational perspective,as presented to the 10th International Workshop on TCs(IWTC-10)held in Bali,Indonesia,from Dec.5–9,2022.The accuracy of TC intensity forecasts issued by operational forecast centers depends on three aspects:real-time observations,TC dynamical model forecast guidance,and techniques and methods used by forecasters.The rapporteur report covers the progress made over the past four years(2018–2021)in all three aspects.This review focuses on the progress of dynamical model forecast guidance.The companion paper(Part II)summarizes the advance from operational centers.The dynamical model forecast guidance continues to be the main factor leading to the improvement of operational TC intensity forecasts.Here,we describe recent advances and developments of major operational regional dynamical TC models and their intensity forecast performance,including HWRF,HMON,COAMPS-TC,Met Office Regional Model,CMA-TYM,and newly developed HAFS.The performance of global dynamical models,including NOAA's GFS,Met Office Global Model(MOGM),JMA's GSM,and IFS(ECMWF),has also been improved in recent years due to their increased horizontal and vertical resolution as well as improved data assimilation systems.Recent challenging cases of rapid intensification are presented and discussed. | Zhan Zhang Weiguo Wang James D.Doyle Jonathan Moskaitis William A.Komaromi Julian Heming Linus Magnusson John P.Cangialosi Levi Cowan Michael Brennan Suhong Ma Ananda Kumar Das Hosomi Takuya Peter Clegg Thomas Birchard John A.Knaff John Kaplan Mrutyunjay Mohapatra Monica Sharma Ikegami Masaaki Liguang Wu Eric Blake | 2023 | Tropical Cyclone Research and Review2023,12,1: | 0 |
| 6 | A review of recent advances(2018–2021)on tropical cyclone intensity change from operational perspectives,part 2:Forecasts by operational centers显示文摘This paper summarizes the progress and activities of tropical cyclone(TC)operational forecast centers during the last four years(2018–2021).It is part II of the review on TC intensity change from the operational perspective in the rapporteur report presented to the 10th International Workshop on TCs(IWTC)held in Bali,Indonesia,from Dec.5–9,2022.Part I of the review has focused on the progress of dynamical model forecast guidance.This part discusses the performance of TC intensity and rapid intensification forecasts from several operational centers.It is shown that the TC intensity forecast errors have continued to decrease since the 9th IWTC held in 2018.In particular,the improvement of rapid intensification forecasts has accelerated,compared with years before 2018.Consensus models,operational procedures,tools and techniques,as well as recent challenging cases from 2018 to 2021 identified by operational forecast centers are described.Research needs and recommendations are also discussed.©2023 The Shanghai Typhoon Institute of China Meteorological Administration.Publishing services by Elsevier B.V.on behalf of KeAi Communication Co.Ltd.This is an open access article under the CC BY-NC-ND license(http://gffzzeb6f7f563f66445dhc0pqpvvnpo0c65ow.ffgz.tsg.suse.edu.cn/licenses/by-nc-nd/4.0/). | Weiguo Wang Zhan Zhang John P.Cangialosi Michael Brennan Levi Cowan Peter Clegg Hosomi Takuya Ikegami Masaaki Ananda Kumar Das Mrutyunjay Mohapatra Monica Sharma John A.Knaff John Kaplan Thomas Birchard James D.Doyle Julian Heming Jonathan Moskaitis Suhong Ma Charles Sampson Liguang Wu Eric Blake | 2023 | Tropical Cyclone Research and Review2023,12,1: | 0 |
| 7 | Unlocking the monolithic integration scenario: optical coupling between GaSb diode lasers epitaxially grown on patterned Si substrates and passive SiN waveguides显示文摘Silicon(Si)photonics has recently emerged as a key enabling technology in many application fields thanks to the mature Si process technology,the large silicon wafer size,and promising Si optical properties.The monolithic integration by direct epitaxy of III-V lasers and Si photonic devices on the same Si substrate has been considered for decades as the main obstacle to the realization of dense photonics chips.Despite considerable progress in the last decade,only discrete III-V lasers grown on bare Si wafers have been reported,whatever the wavelength and laser technology.Here we demonstrate the first semiconductor laser grown on a patterned Si photonics platform with light coupled into a waveguide.A mid-IR GaSb-based diode laser was directly grown on a pre-patterned Si photonics wafer equipped with SiN waveguides clad by SiO_(2).Growth and device fabrication challenges,arising from the template architecture,were overcome to demonstrate more than 10 mw outpower of emitted light in continuous wave operation at room temperature.In addition,around 10%of the light was coupled into the SiN waveguides,in good agreement with theoretical calculations for this butt-coupling configuration.This work lft an important building block and it paves the way for future low-cost,large-scale,fully integrated photonic chips. | Andres Remis Laura Monge-Bartolome Michele Paparella Audrey Gilberto Guilhem Boissier Marco Grande Alan Blake Liam O'Faolain Laurent Cerutti Jean-Baptiste Rodriguez Eric Tournie | 2023 | Light(Science & Applications)2023,12,7: | 0 |
| 8 | Recent advances in operational tropical cyclone genesis forecast显示文摘Tropical cyclone(TC)genesis prediction is a major scientific challenge to the TC operation and research community.This report surveys the current status of TC genesis forecasts by a number of major operational centers covering the key ocean basins across both hemispheres.Since IWTC-9,we see an emergence of probabilistic TC genesis forecast products by operational centers,typically supported by the statistical processing of a combination of ensemble prediction and satellite analysis,covering time periods of couple of days to weeks ahead.The prevalence of multi-center grand ensemble approach highlights the uncertainties involved and the forecast challenges in quantitative genesis prediction.While operational practice might differ across agencies,verification efforts generally report a steady or slightly improving skill level in terms of reliability,which likely results from the continual improvement in global numerical weather prediction capability. | K.K.Hon Robert Ballard Eric Blake Steph Bond Robb Gile Daniel Halperin Charles Helms Hoang Lam Xinyan Lyu Mrutyunjay Mohapatra Monica Sharma Akira Shimokobe Ralf Toumi Seonghee Won | 2023 | Tropical Cyclone Research and Review2023,12,4: | 0 |
| 9 | Recent advances in seasonal and multi-annual tropical cyclone forecasting显示文摘Seasonal tropical cyclone(TC)forecasting has evolved substantially since its commencement in the early 1980s.However,present operational seasonal TC forecasting services still do not meet the requirements of society and stakeholders:current operational products are mainly basin-scale information,while more detailed sub-basin scale information such as potential risks of TC landfall is anticipated for decision making.To fill this gap and make the TC science and services move forward,this paper reviews recent research and development in seasonal tropical cyclone(TC)forecasting.In particular,this paper features new research topics on seasonal TC predictability in neutral conditions of El Ni˜no–Southern Oscillation(ENSO),emerging forecasting techniques of seasonal TC activity including Machine Learning/Artificial Intelligence,and multi-annual TC predictions.We also review the skill of forecast systems at predicting landfalling statistics for certain regions of the North Atlantic,Western North Pacific and South Indian oceans and discuss the gap that remains between current products and potential user's expectations.New knowledge and advanced forecasting techniques are expected to further enhance the capability of seasonal TC forecasting and lead to more actionable and fit-for-purpose products. | Yuhei Takaya Louis-Philippe Caron Eric Blake Francois Bonnardot Nicolas Bruneau Joanne Camp Johnny Chan Paul Gregory Jhordanne J.Jones Namyoung Kang Philip J.Klotzbach Yuriy Kuleshov Marie-Dominique Leroux Julia F.Lockwood Hiroyuki Murakami Akio Nishimura Dushmanta R.Pattanaik Tom J.Philp Yohan Ruprich-Robert Ralf Toumi Frederic Vitart Seonghee Won Ruifen Zhan | 2023 | Tropical Cyclone Research and Review2023,12,3: | 0 |