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2.
Rev Sci Instrum ; 91(12): 123112, 2020 Dec 01.
Article in English | MEDLINE | ID: mdl-33379994

ABSTRACT

Time-of-flight-based momentum microscopy has a growing presence in photoemission studies, as it enables parallel energy- and momentum-resolved acquisition of the full photoelectron distribution. Here, we report table-top extreme ultraviolet time- and angle-resolved photoemission spectroscopy (trARPES) featuring both a hemispherical analyzer and a momentum microscope within the same setup. We present a systematic comparison of the two detection schemes and quantify experimentally relevant parameters, including pump- and probe-induced space-charge effects, detection efficiency, photoelectron count rates, and depth of focus. We highlight the advantages and limitations of both instruments based on exemplary trARPES measurements of bulk WSe2. Our analysis demonstrates the complementary nature of the two spectrometers for time-resolved ARPES experiments. Their combination in a single experimental apparatus allows us to address a broad range of scientific questions with trARPES.

3.
Phys Rev Lett ; 125(21): 216404, 2020 Nov 20.
Article in English | MEDLINE | ID: mdl-33274965

ABSTRACT

We performed angle-resolved photoemission spectroscopy (ARPES) of bulk 2H-WSe_{2} for different crystal orientations linked to each other by time-reversal symmetry. We introduce a new observable called time-reversal dichroism in photoelectron angular distributions (TRDAD), which quantifies the modulation of the photoemission intensity upon effective time-reversal operation. We demonstrate that the hidden orbital pseudospin texture leaves its imprint on TRDAD, due to multiple orbital interference effects in photoemission. Our experimental results are in quantitative agreement with both the tight-binding model and state-of-the-art fully relativistic calculations performed using the one-step model of photoemission. While spin-resolved ARPES probes the spin component of entangled spin-orbital texture in multiorbital systems, we unambiguously demonstrate that TRDAD reveals its orbital pseudospin texture counterpart.

4.
Clin Exp Dermatol ; 44(5): e181-e188, 2019 Jul.
Article in English | MEDLINE | ID: mdl-30706506

ABSTRACT

A wide differential diagnosis must be entertained in patients with unusual oral and pharyngeal ulcerations. A mucosal biopsy is essential. We retrospectively reviewed 10 cases from the Infectious Diseases Division at Mayo Clinic Rochester (MN, USA), in which the diagnosis proved to be Histoplasma capsulatum infection. Between 1995 and 2016, 10 patients were diagnosed with oropharyngeal histoplasmosis. Common presenting symptoms included weight loss, weakness and oropharyngeal pain with ulcerations. Despite specialty evaluation at other facilities, diagnostic delay occurred in six patients due to lack of biopsy or fungal staining. Yeast forms consistent with H. capsulatum were identified in the biopsy specimens of all our patients. Treatment included intravenous amphotericin B and prolonged courses of azoles. Oral histoplasmosis occurred in both immunocompetent and immunosuppressed patients, and was a manifestation of disseminated infection. Severe pain involving all areas of the mouth was typical. Diagnostic delay may be avoided by early biopsy using fungal stains.


Subject(s)
Delayed Diagnosis , Histoplasmosis/diagnosis , Pharyngeal Diseases/diagnosis , Aged , Aged, 80 and over , Amphotericin B/therapeutic use , Antifungal Agents/therapeutic use , Biopsy , Complement Fixation Tests , Female , Histoplasmosis/drug therapy , Histoplasmosis/immunology , Histoplasmosis/pathology , Humans , Immunocompromised Host , Male , Middle Aged , Oropharynx/pathology , Pharyngeal Diseases/drug therapy , Pharyngeal Diseases/immunology , Pharyngeal Diseases/pathology , Retrospective Studies , Smoking , Tongue/pathology , Weight Loss
5.
Nat Commun ; 8: 16051, 2017 07 17.
Article in English | MEDLINE | ID: mdl-28714466

ABSTRACT

In the rapidly growing field of spintronics, simultaneous control of electronic and magnetic properties is essential, and the perspective of building novel phases is directly linked to the control of tuning parameters, for example, thickness and doping. Looking at the relevant effects in interface-driven spintronics, the reduced symmetry at a surface and interface corresponds to a severe modification of the overlap of electron orbitals, that is, to a change of electron hybridization. Here we report a chemically and magnetically sensitive depth-dependent analysis of two paradigmatic systems, namely La1-xSrxMnO3 and (Ga,Mn)As. Supported by cluster calculations, we find a crossover between surface and bulk in the electron hybridization/correlation and we identify a spectroscopic fingerprint of bulk metallic character and ferromagnetism versus depth. The critical thickness and the gradient of hybridization are measured, setting an intrinsic limit of 3 and 10 unit cells from the surface, respectively, for (Ga,Mn)As and La1-xSrxMnO3, for fully restoring bulk properties.

6.
J Synchrotron Radiat ; 24(Pt 1): 175-187, 2017 01 01.
Article in English | MEDLINE | ID: mdl-28009557

ABSTRACT

In this work the experimental uncertainties concerning electron spin polarization (SP) under various realistic measurement conditions are theoretically derived. The accuracy of the evaluation of the SP of the photoelectron current is analysed as a function of the detector parameters and specifications, as well as of the characteristics of the photoexcitation sources. In particular, the different behaviour of single counter or twin counter detectors when the intensity fluctuations of the source are considered have been addressed, leading to a new definition of the SP detector performance. The widely used parameter called the figure of merit is shown to be inadequate for describing the efficiency of SP polarimeters, especially when they are operated with time-structured excitation sources such as free-electron lasers. Numerical simulations have been performed and yield strong implications in the choice of the detecting instruments in spin-polarization experiments, that are constrained in a limited measurement time. Our results are therefore applied to the characteristics of a wide set of state-of-the-art spectroscopy facilities all over the world, and an efficiency diagram for SP experiments is derived. These results also define new mathematical instruments for handling the correct statistics of SP measurements in the presence of source intensity fluctuations.

7.
Rev Sci Instrum ; 87(3): 035111, 2016 Mar.
Article in English | MEDLINE | ID: mdl-27036823

ABSTRACT

ULTRASPIN is an apparatus devoted to the measurement of the spin polarization (SP) of electrons ejected from solid surfaces in a UHV environment. It is designed to exploit ultrafast light sources (free electron laser or laser high harmonic generation) and to perform (photo)electron spin analysis by an arrangement of Mott scattering polarimeters that measure the full SP vector. The system consists of two interconnected UHV vessels: one for surface science sample cleaning treatments, e-beam deposition of ultrathin films, and low energy electron diffraction/AES characterization. The sample environment in the polarimeter allows for cryogenic cooling and in-operando application of electric and magnetic fields. The photoelectrons are collected by an electrostatic accelerator and transport lens that form a periaxial beam that is subsequently directed by a Y-shaped electrostatic deflector to either one of the two orthogonal Mott polarimeters. The apparatus has been designed to operate in the extreme conditions of ultraintense single-X-ray pulses as originated by free electron lasers (up to 1 kHz), but it allows also for the single electron counting mode suitable when using statistical sources such as synchrotron radiation, cw-laser, or e-gun beams (up to 150 kcps).

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