74 research outputs found

    Coherent manipulation of quantum states in a coupled cavity-atom system

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    We study atomic coherence and interference in four-level atoms confined in an optical cavity and explores the interplay between cavity QED and electromagnetically induced transparency (EIT). The destructive interference can be induced in the coupled cavityatom system with a free-space control laser tuned to the normal mode resonance and leads to suppression of the normal mode excitation. Then by adding a pump laser coupled to the four-level atoms from free space, the control-laser induced destructive interference can be reversed and the normal mode excitation is restored. When the free-space control laser is tuned to the atomic resonance and forms a Λ-type EIT configuration with the cavity-atom system, EIT is manifested as a narrow transmission peak of a weak probe laser coupled into the cavity mode. With the free-space pump laser driving the cavity-confined atoms in a four-level configuration, the narrow transmission peak of the cavity EIT can be split into two peaks and the dressed intra-cavity dark states are created analogous to the dressed states in free space. We report experimental studies of such coherently coupled cavityatom system realized with cold Rb atoms confined in an optical cavity and discuss possible applications in quantum nonlinear optics and quantum information science

    Construction of a prognostic assessment model for colon cancer patients based on immune-related genes and exploration of related immune characteristics

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    Objectives: To establish a novel risk score model that could predict the survival and immune response of patients with colon cancer.Methods: We used The Cancer Genome Atlas (TCGA) database to get mRNA expression profile data, corresponding clinical information and somatic mutation data of patients with colon cancer. Limma R software package and univariate Cox regression were performed to screen out immune-related prognostic genes. GO (Gene ontology) and KEGG (Kyoto Encyclopedia of Genes and Genomes) were used for gene function enrichment analysis. The risk scoring model was established by Lasso regression and multivariate Cox regression. CIBERSORT was conducted to estimate 22 types of tumor-infiltrating immune cells and immune cell functions in tumors. Correlation analysis was used to demonstrate the relationship between the risk score and immune escape potential.Results: 679 immune-related genes were selected from 7846 differentially expressed genes (DEGs). GO and KEGG analysis found that immune-related DEGs were mainly enriched in immune response, complement activation, cytokine-cytokine receptor interaction and so on. Finally, we established a 3 immune-related genes risk scoring model, which was the accurate independent predictor of overall survival (OS) in colon cancer. Correlation analysis indicated that there were significant differences in T cell exclusion potential in low-risk and high-risk groups.Conclusion: The immune-related gene risk scoring model could contribute to predicting the clinical outcome of patients with colon cancer

    Radiation Effect on Optical Properties of Bi-Related Materials Co-Doped Silica Optical Fibers

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    Three kinds of Bi-related materials co-doped silica optical fibers (BRDFs), including Bi/Al, Bi/Pb, and Bi/Er co-doped fibers, were fabricated using atomic layer deposition (ALD) and modified chemical vapor deposition (MCVD). Then, the effect of irradiation on the optical properties of BRDFs was investigated. The experimental results showed that the fluorescence intensity, the fluorescence lifetime of BRDFs at the 1150 nm band, increased significantly with low-dose treatment, whereas it decreased with a further increase in the radiation dose. In addition, the merit Mα values of the BRDFs, a ratio of useful pump absorption to total pump absorption, decreased with an increase of the radiation doses. The Verdet constants of different doped fibers increased up to saturation level with increases in the radiation dose. However, for a Bi-doped fiber, its Verdet constant decreased and the direction of Faraday’s rotation changed under low-dose radiation treatment. In addition, the Verdet constant increase of the Bi-doped silica fiber was much faster than that of other single mode fiber (SMF) and Pb-doped silica fibers treated with high-dose radiation. All of these findings are of great significance for the study of the optical properties of BRDFs

    Benzo[1,2-b:4,5-b′]dithiophene and benzotriazole based small molecule for solution-processed organic solar cells

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    A&nbsp;novel&nbsp;deep&nbsp;HOMO&nbsp;A1-p-A2-D-A2-p-A1&nbsp;type&nbsp;molecule&nbsp;(D(CATBTzT)BDT),&nbsp;which&nbsp;terminal<br /> electron-withdrawing&nbsp;octyl&nbsp;cyanoacetate&nbsp;group&nbsp;is&nbsp;connected&nbsp;to&nbsp;a&nbsp;benzo[1,2-b:4,5-b0]dithiophene<br /> (BDT)&nbsp;core&nbsp;through&nbsp;another&nbsp;electron-accepting&nbsp;benzotriazole&nbsp;block,&nbsp;has&nbsp;been&nbsp;synthesized,<br /> characterized,&nbsp;and&nbsp;employed&nbsp;as&nbsp;electron&nbsp;donor&nbsp;material&nbsp;for&nbsp;small&nbsp;molecule<br /> organic&nbsp;solar&nbsp;cells&nbsp;(SM-OSCs).&nbsp;By&nbsp;simple&nbsp;solution&nbsp;spin-coating&nbsp;fabrication&nbsp;process,&nbsp;D(CATBTzT)<br /> BDT/PC61BM&nbsp;based&nbsp;OSCs&nbsp;exhibit&nbsp;a&nbsp;power&nbsp;conversion&nbsp;efficiency&nbsp;(PCE)&nbsp;of&nbsp;3.61%&nbsp;with&nbsp;a<br /> high&nbsp;open-circuit&nbsp;voltage&nbsp;of&nbsp;0.93&nbsp;V.&nbsp;The&nbsp;D(CATBTzT)BDT&nbsp;based&nbsp;solar&nbsp;cells&nbsp;device&nbsp;also&nbsp;can<br /> show&nbsp;high&nbsp;FF&nbsp;of&nbsp;72%&nbsp;with&nbsp;PCEs&nbsp;of&nbsp;2.31%&nbsp;which&nbsp;is&nbsp;one&nbsp;of&nbsp;the&nbsp;best&nbsp;FF&nbsp;results&nbsp;for&nbsp;solution-processed<br /> SM-OSCs.<br /

    Finishing the euchromatic sequence of the human genome

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    The sequence of the human genome encodes the genetic instructions for human physiology, as well as rich information about human evolution. In 2001, the International Human Genome Sequencing Consortium reported a draft sequence of the euchromatic portion of the human genome. Since then, the international collaboration has worked to convert this draft into a genome sequence with high accuracy and nearly complete coverage. Here, we report the result of this finishing process. The current genome sequence (Build 35) contains 2.85 billion nucleotides interrupted by only 341 gaps. It covers ∼99% of the euchromatic genome and is accurate to an error rate of ∼1 event per 100,000 bases. Many of the remaining euchromatic gaps are associated with segmental duplications and will require focused work with new methods. The near-complete sequence, the first for a vertebrate, greatly improves the precision of biological analyses of the human genome including studies of gene number, birth and death. Notably, the human enome seems to encode only 20,000-25,000 protein-coding genes. The genome sequence reported here should serve as a firm foundation for biomedical research in the decades ahead

    Prevalence, associated factors and outcomes of pressure injuries in adult intensive care unit patients: the DecubICUs study

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    Funder: European Society of Intensive Care Medicine; doi: http://dx.doi.org/10.13039/501100013347Funder: Flemish Society for Critical Care NursesAbstract: Purpose: Intensive care unit (ICU) patients are particularly susceptible to developing pressure injuries. Epidemiologic data is however unavailable. We aimed to provide an international picture of the extent of pressure injuries and factors associated with ICU-acquired pressure injuries in adult ICU patients. Methods: International 1-day point-prevalence study; follow-up for outcome assessment until hospital discharge (maximum 12 weeks). Factors associated with ICU-acquired pressure injury and hospital mortality were assessed by generalised linear mixed-effects regression analysis. Results: Data from 13,254 patients in 1117 ICUs (90 countries) revealed 6747 pressure injuries; 3997 (59.2%) were ICU-acquired. Overall prevalence was 26.6% (95% confidence interval [CI] 25.9–27.3). ICU-acquired prevalence was 16.2% (95% CI 15.6–16.8). Sacrum (37%) and heels (19.5%) were most affected. Factors independently associated with ICU-acquired pressure injuries were older age, male sex, being underweight, emergency surgery, higher Simplified Acute Physiology Score II, Braden score 3 days, comorbidities (chronic obstructive pulmonary disease, immunodeficiency), organ support (renal replacement, mechanical ventilation on ICU admission), and being in a low or lower-middle income-economy. Gradually increasing associations with mortality were identified for increasing severity of pressure injury: stage I (odds ratio [OR] 1.5; 95% CI 1.2–1.8), stage II (OR 1.6; 95% CI 1.4–1.9), and stage III or worse (OR 2.8; 95% CI 2.3–3.3). Conclusion: Pressure injuries are common in adult ICU patients. ICU-acquired pressure injuries are associated with mainly intrinsic factors and mortality. Optimal care standards, increased awareness, appropriate resource allocation, and further research into optimal prevention are pivotal to tackle this important patient safety threat

    On the historical context and the inheritance strategy of the water transport city in Guigang

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    As the most extensive port in Guangxi's inland economic hinterland, waterway transportation is an important driving force for the development of Guigang's cities. On the basis of tracing the development history of Guigang water transport city, this paper summarizes and analyzes the historical characteristics of water transport development and the spatial evolution of Guigang city, and proposes the planning strategy of Guigang's water transport city historical context, in order to improve the competitiveness of Guigang city and promote the development of Guigang city
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