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1.
Nature ; 616(7955): 50-55, 2023 04.
Artículo en Inglés | MEDLINE | ID: mdl-36949196

RESUMEN

The ambition of harnessing the quantum for computation is at odds with the fundamental phenomenon of decoherence. The purpose of quantum error correction (QEC) is to counteract the natural tendency of a complex system to decohere. This cooperative process, which requires participation of multiple quantum and classical components, creates a special type of dissipation that removes the entropy caused by the errors faster than the rate at which these errors corrupt the stored quantum information. Previous experimental attempts to engineer such a process1-7 faced the generation of an excessive number of errors that overwhelmed the error-correcting capability of the process itself. Whether it is practically possible to utilize QEC for extending quantum coherence thus remains an open question. Here we answer it by demonstrating a fully stabilized and error-corrected logical qubit whose quantum coherence is substantially longer than that of all the imperfect quantum components involved in the QEC process, beating the best of them with a coherence gain of G = 2.27 ± 0.07. We achieve this performance by combining innovations in several domains including the fabrication of superconducting quantum circuits and model-free reinforcement learning.

2.
Oecologia ; 123(4): 535-542, 2000 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-28308762

RESUMEN

The emergence phenology and feeding ecology of annual cicadas in tallgrass prairie are poorly documented. However, these large insects are abundant, and their annual emergence represents a potentially important flux of energy and nutrients from belowground to aboveground. We conducted a study at Konza Prairie Research Natural Area in eastern Kansas to characterize and quantify cicada emergence and associated energy and nutrient fluxes. We established emergence trap transects in three habitat types (upland prairie, lowland prairie, and riparian forest), and collected cicadas every 3 days from May to September. A subset of trapped cicadas was used for species- and sex-specific mass, nutrient, and stable isotope analyses. Five species were trapped during the study, of which three were dominant. Cicadetta calliope and Tibicen aurifera exhibited significantly higher emergence production in upland prairie than in lowland prairie, and were not captured in forested sites at all. T. dorsata emerged from all three habitat types, and though not significant, showed a trend of greater abundance in lowland grasslands. Two less abundant species, T. pruinosa and T. lyricen, emerged exclusively from forested habitats. Nitrogen fluxes associated with total cicada emergence were estimated to be ∼4 kg N ha-1 year-1 in both grassland habitats, and 1.01 kg N ha-1 year-1 in forested sites. Results of stable isotope analyses showed clear patterns of resource partitioning among dominant cicada species emerging from grassland sites. T. aurifera and C. calliope had δ13C and δ15N signatures indicative of feeding on shallowly rooted C4 plants such as the warm-season grasses dominant in tallgrass prairie ecosystems, whereas T. dorsata signatures suggested preferential feeding on more deeply rooted C3 plants.

3.
Am J Clin Pathol ; 86(5): 650-3, 1986 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-3465229

RESUMEN

The Pediatric Oncology Group analyzed 103 cases of childhood acute lymphocytic leukemia (ALL) with an acid phosphatase stain and with a series of immunologic markers. As reported by others, the authors demonstrated a high correlation of acid phosphatase (AP) positivity and T-ALL. However, a subset of T-ALL was acid phosphatase negative, and some non-T, non-B, non-pre-B-ALL cases were AP positive. The predictive value of the AP test was, therefore, poor as a marker of T-ALL. AP-negative T-ALL cases appeared to be a distinctive subset of T-ALL, and AP negativity an intrinsic characteristic of this subset, rather than a failure of the test system. AP-positive n-ALL cases demonstrated no difference from AP-negative cases and, in particular, no evidence of early T-ALL differentiation.


Asunto(s)
Fosfatasa Ácida/sangre , Leucemia Linfoide/enzimología , Niño , Humanos , Leucemia Linfoide/clasificación , Estudios Prospectivos
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