Frequency-shifted laser feedback interferometry in non-planar ring oscillators
Laser feedback interferometry (LFI) has a wide range of applications such as displacement, distance and velocity measurements. LFI has been realized in many types of lasers but has never been reported in non-planar ring oscillators (NPRO) to the best of our knowledge. In this letter, we present a ne...
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Zusammenfassung: | Laser feedback interferometry (LFI) has a wide range of applications such as
displacement, distance and velocity measurements. LFI has been realized in many
types of lasers but has never been reported in non-planar ring oscillators
(NPRO) to the best of our knowledge. In this letter, we present a new type of
LFI based on an NPRO laser. The intrinsic resistance to optical feedback in
NPROs is broken under weak-magnetic-intensity condition, where stable
bidirectional lasing is initiated in the ring cavity. The interference signal,
i.e., the beat of the bidirectional lasing is with frequency from a few hundred
of kilohertz to a few megahertz which is mainly determined by the applied
magnetic intensity in NPRO. Frequency-shifted LFI is thus constructed in NPRO
without using acousto-optic modulators as mostly used in conventional LFI. A
theoretical model is established to well describe the phenomenon. In the end,
micro-vibrational measurements are demonstrated to prove the potential
application, where vibration-detection amplitude limit below 30 pm,
vibration-detection frequency range from a few kilohertz to a few hundred
kilohertz is achieved. Benefiting from the characteristics of tiny footprint,
ruggedized structure, long lifetime and ultralow-noise of NPRO lasers,
NPRO-based LFI may find important applications in industry, scientific
research, military and aerospace. |
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DOI: | 10.48550/arxiv.2409.19870 |