The recent introduction(1-3) of coherent optical communications has created a compelling need for ultrafast phase-sensitive measurement techniques operating at milliwatt peak power levels and in timescales ranging from sub-picoseconds to nanoseconds. Previous reports of ultrafast optical signal measurements(4-7) in integrated platforms(8-10) include time-lens temporal imaging(5) on a silicon chip(8,9) and waveguide-based frequency-resolved optical gating (FROG)(4,6,10). Time-lens imaging is phase-insensitive, and waveguide-based FROG methods require the integration of long tunable delay lines, which is still an unsolved challenge. Here, we report a device capable of characterizing both the amplitude and phase of ultrafast optical pulses with the aid of a synchronized incoherently related clock pulse. It is based on a novel variation of spectral phase interferometry for direct electric-field reconstruction (SPIDER)(4,7) that exploits degenerate four-wave mixing in a CMOS-compatible chip. We measure pulses with a peak power of <100 mW, a frequency bandwidth of >1 THz, and up to 100 ps pulsewidths, yielding a time-bandwidth product of >100.

Sub-picosecond phase-sensitive optical pulse characterization on a chip

Peccianti M;
2011

Abstract

The recent introduction(1-3) of coherent optical communications has created a compelling need for ultrafast phase-sensitive measurement techniques operating at milliwatt peak power levels and in timescales ranging from sub-picoseconds to nanoseconds. Previous reports of ultrafast optical signal measurements(4-7) in integrated platforms(8-10) include time-lens temporal imaging(5) on a silicon chip(8,9) and waveguide-based frequency-resolved optical gating (FROG)(4,6,10). Time-lens imaging is phase-insensitive, and waveguide-based FROG methods require the integration of long tunable delay lines, which is still an unsolved challenge. Here, we report a device capable of characterizing both the amplitude and phase of ultrafast optical pulses with the aid of a synchronized incoherently related clock pulse. It is based on a novel variation of spectral phase interferometry for direct electric-field reconstruction (SPIDER)(4,7) that exploits degenerate four-wave mixing in a CMOS-compatible chip. We measure pulses with a peak power of <100 mW, a frequency bandwidth of >1 THz, and up to 100 ps pulsewidths, yielding a time-bandwidth product of >100.
2011
Istituto per i Processi Chimico-Fisici - IPCF
Inglese
5
10
618
623
6
http://www.nature.com/nphoton/journal/v5/n10/full/nphoton.2011.199.html
Sì, ma tipo non specificato
ELECTRIC-FIELD RECONSTRUCTION; SPECTRAL INTERFEROMETRY; SHEARING INTERFEROMETRY
ULTRASHORT PULSES
INTEGRATED OPTICS
8
info:eu-repo/semantics/article
262
Pasquazi, A; Peccianti, M; Park, Y; Little, Be; Chu, St; Morandotti, R; Azana, J; Moss, Dj
01 Contributo su Rivista::01.01 Articolo in rivista
restricted
File in questo prodotto:
File Dimensione Formato  
prod_185860-doc_34572.pdf

solo utenti autorizzati

Descrizione: Sub-picosecond phase-sensitive optical pulse characterization on a chip
Dimensione 1.13 MB
Formato Adobe PDF
1.13 MB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/232285
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 120
  • ???jsp.display-item.citation.isi??? 95
social impact