Homo- and heterodyne detection are fundamental techniques for measuring propagating electromagnetic fields. However, applying these techniques to stationary fields confined in cavities poses a challenge. As a way to overcome this challenge, we propose to use repeated indirect measurements of a two-level system interacting with the cavity.
View Article and Find Full Text PDFSignificant progress has been made with multipartite entanglement of discrete qubits, but continuous variable systems may provide a more scalable path toward entanglement of large ensembles. We demonstrate multipartite entanglement in a microwave frequency comb generated by a Josephson parametric amplifier subject to a bichromatic pump. We find 64 correlated modes in the transmission line using a multifrequency digital signal processing platform.
View Article and Find Full Text PDFTailoring the decay rate of structured quantum emitters into their environment opens new avenues for nonlinear quantum optics, collective phenomena, and quantum communications. Here, we demonstrate a novel coupling scheme between an artificial molecule comprising two identical, strongly coupled transmon qubits and two microwave waveguides. In our scheme, the coupling is engineered so that transitions between states of the same (opposite) symmetry, with respect to the permutation operator, are predominantly coupled to one (the other) waveguide.
View Article and Find Full Text PDFWe experimentally demonstrate the steady-state generation of propagating Wigner-negative states from a continuously driven superconducting qubit. We reconstruct the Wigner function of the radiation emitted into propagating modes defined by their temporal envelopes, using digital filtering. For an optimized temporal filter, we observe a large Wigner logarithmic negativity, in excess of 0.
View Article and Find Full Text PDFIn this work we demonstrate numerically that the nonlinearity provided by a continuously driven two-level system allows for the generation of Wigner-negative states of the electromagnetic field confined in one spatial dimension. Wigner-negative states, also known as Wigner nonclassical states, are desirable for quantum information protocols beyond the scope of classical computers. Focusing on the steady-state emission from the two-level system, we find the largest negativity at the drive strength where the coherent reflection vanishes.
View Article and Find Full Text PDFA 78-year-old woman with liver damage resembling chronic active hepatitis and occuring during long-term nitrofurantoin treatment is described. On admission to hospital she displayed jaundice, ascites and high serum levels of GOT, GPT, bilirubin and gamma-globulin as well as high titres of ANF and antibodies against smooth muscle cells. After withdrawal of nitrofurantoin the clinical and laboratory picture normalized without corticosteroid treatment, suggesting that the liver reaction was drug-induced.
View Article and Find Full Text PDFActa Med Scand
December 1976
The acteylator phenotype has been determined (isoniazid half-life) in 31 patients, 25 of them women, who had exhibited a lupus erythematosus-like syndrome during treatment with hydralazine. Twenty-nine patients were slow acetylators, one was rapid (probably spontaneous SLE) and one uncertain. Only two patients had been given more than 200 mg of hydralazine daily.
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September 1975
A retrospective investigation of 89 cases of the Stevens-Johnson and/or Lyell's syndrome showed that 77 patients (87%) had been treated with drugs, 2/3 of them for symptoms of respiratory and/or urinary infections. The most frequent drugs were longterm sulfonamide preparations, penicillins, butazones and antiepileptics. Mycoplasma pneumoniae and Staphylococcus aureus were the most common infective agents of those reported.
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