תקציר
Atomic beams are powerful tools for measuring fundamental physical constants, probing atomic interactions, and developing precision metrology techniques such as atomic clocks and interferometry. However, most atomic-beam devices are bulky, which limits their miniaturization. Recent efforts toward the miniaturization of atomic beams have been reported (see, Ref. [10]). Here, we demonstrate an alternative approach, showing that micrometer-scale vapor cells can emulate atomic-beam behavior through geometry-dependent velocity filtering. Specifically, in a 5-µm-thick rubidium vapor cell, coherence is preserved for atoms moving parallel to the cell walls, enabling observation of the Faraday–Ramsey effect in the absence of buffer gas or anti-relaxation coatings. Using a spatially displaced pump–probe scheme and magnetic-field scanning, we observe distinct Ramsey fringes in excellent agreement with the theoretical model. This technique enables compact implementations of Faraday–Ramsey measurements in microfabricated alkali-vapor cells.
| שפה מקורית | אנגלית |
|---|---|
| מספר המאמר | e02129 |
| כתב עת | Laser and Photonics Reviews |
| כרך | 20 |
| מספר גיליון | 10 |
| מזהי עצם דיגיטלי (DOIs) | |
| סטטוס פרסום | פורסם - 22 מאי 2026 |
| פורסם באופן חיצוני | כן |
טביעת אצבע
להלן מוצגים תחומי המחקר של הפרסום 'Faraday–Ramsey Rotation in Ultrathin Alkali Vapor Cells as an Analogy to Atomic-Beam Systems'. יחד הם יוצרים טביעת אצבע ייחודית.פורמט ציטוט ביבליוגרפי
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