150 results on '"March, Stephen"'
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2. Photon-trapping-enhanced avalanche photodiodes for mid-infrared applications
3. Characterization of band offsets in Al$_x$In$_{1-x}$As$_y$Sb$_{1-y}$ alloys with varying Al composition
4. Full band Monte Carlo simulation of AlInAsSb digital alloys
5. Author Correction: Multistep staircase avalanche photodiodes with extremely low noise and deterministic amplification
6. ERIS: revitalising an adaptive optics instrument for the VLT
7. Separate absorption, charge, and multiplication staircase avalanche photodiodes
8. AlInAsSb Geiger-mode SWIR and eSWIR SPADs with high avalanche probability
9. Multistep staircase avalanche photodiodes with extremely low noise and deterministic amplification
10. Stabilization of a Metastable Fibrous Bi21.2(1)(Mn1–x Co x )20 Phase with Pseudo-Pentagonal Symmetry Prepared Using a Bi Self-Flux
11. Structural and ferromagnetic properties of an orthorhombic phase of MnBi stabilized with Rh additions
12. Staircase Avalanche Photodiode with a Mid-wave Infrared Absorber
13. Near-unity excess noise factor of staircase avalanche photodiodes
14. Low-noise high-temperature AlInAsSb/GaSb avalanche photodiodes for 2-μm applications
15. Demonstration of the AlInAsSb cascaded multiplier avalanche photodiode
16. The application of high temperature superconducting materials to power switches
17. Twin-box ITER joints under electromagnetic transient loads
18. AlInAsSb Separate Absorption, Charge, and Multiplication Avalanche Photodiodes for Mid-Infrared Detection
19. Mid-infrared second-harmonic generation in ultra-thin plasmonic metasurfaces without a full-metal backplane
20. Digital Alloy Staircase Avalanche Photodetectors With Tunneling-Enhanced Gain
21. Development of Magnet Technologies for HTS Insert Coils
22. Test results of the 18 kA EDIPO HTS current leads
23. Room-temperature bandwidth of 2-μm AlInAsSb avalanche photodiodes
24. Cryogenic Noise of Staircase Avalanche Photodiodes
25. Low-noise AlxIn₁₋xAsySb₁₋y digital alloy staircase avalanche photodiodes grown by molecular beam epitaxy
26. Comparison and analysis of Al0.7InAsSb avalanche photodiodes with different background doping polarities
27. Low-noise infrared digital-alloy avalanche photodiodes
28. True hero of the trade: On the critical contributions of Art Gossard to modern device technology
29. 2-μm-Compatible AlInAsSb Avalanche Photodiodes
30. Interactive youth science workshops benefit student participants and graduate student mentors
31. Full band Monte Carlo simulation of AlInAsSb digital alloys
32. High Gain, Low Dark Current Al0.8In0.2As0.23Sb0.77 Avalanche Photodiodes
33. Characterization of band offsets in AlxIn1-xAsySb1-y alloys with varying Al composition
34. AlxIn1-xAsySb1-y Separate Absorption, Charge, and Multiplication Avalanche Photodiodes for 2-μm Detection
35. Comparison of Different Period Digital Alloy Al${}_{\text{0.7}}$InAsSb Avalanche Photodiodes
36. Stark‐Localization‐Limited Franz–Keldysh Effect in InAlAs Digital Alloys
37. Composition-dependent structural transition in epitaxial Bi1−xSbx thin films on Si(111)
38. Photo-induced terahertz near-field dynamics of graphene/InAs heterostructures
39. AlInAsSb Impact Ionization Coefficients
40. Characterization of band offsets in AlxIn1-xAsySb1-y alloys with varying Al composition.
41. Digital Alloy Growth of Low-Noise Avalanche Photodiodes
42. Difference‐Frequency Generation in Polaritonic Intersubband Nonlinear Metasurfaces
43. Corrections to “Al0.8In0.2As0.23Sb0.77 Avalanche Photodiodes” [Jun 1, 2018 1048-1051]
44. A multi-purpose cryogenic test facility for astronomical instrumentation
45. Development of an alignment platform for ESO's mid-infrared E-ELT imager and spectrograph (METIS)
46. Development of cryogenic mechanisms for the VLT/ERIS instrument
47. Al0.8In0.2As0.23Sb0.77 Avalanche Photodiodes
48. Avalanche Photodiodes Based on the AlInAsSb Materials System
49. ERIS, first generation becoming second generation, or re-vitalizing an AO instrument
50. Stabilization of a Metastable Fibrous Bi21.2(1)(Mn1–xCox)20 Phase with Pseudo-Pentagonal Symmetry Prepared Using a Bi Self-Flux
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