SQuaD Part­ner KEE­Quant vali­da­tes quan­tum-secu­re Com­mu­ni­ca­ti­on wit­hout sepa­ra­te Dark Fiber

Exis­ting Fiber Net­works can now car­ry both: quan­tum-secu­re Com­mu­ni­ca­ti­on and High-Capa­ci­ty Data Traf­fic:

Fürth, Ger­ma­ny 2026-07-02

KEE­Quant, tog­e­ther with con­sor­ti­um part­ners CESNET, EXATEL, and PCSS, vali­da­ted the sys­tem in a repre­sen­ta­ti­ve modern opti­cal trans­port net­work envi­ron­ment, demons­t­ra­ting quan­tum-secu­re com­mu­ni­ca­ti­on along­side high-capa­ci­ty trans­port traf­fic over distances of up to 75 km wit­hout dedi­ca­ted dark fiber.

AI-gene­ra­ted Illus­tra­ti­on: A visua­liza­ti­on of QKD inte­gra­ti­on into exis­ting trans­port infra­struc­tu­re: QKD, shown as a pur­ple Quan­tum Stream, joins clas­si­cal high-capa­ci­ty data traf­fic insi­de the same stan­dard fiber.

The SEQRET con­sor­ti­um part­ners have vali­da­ted that exis­ting fiber net­works can sup­port quan­tum-secu­re com­mu­ni­ca­ti­on along­side high-capa­ci­ty data traf­fic on the same stan­dard fiber pair. The sys­tem demons­tra­ted Quan­tum Key Dis­tri­bu­ti­on (QKD) tog­e­ther with up to 64 Tb/s of clas­si­cal data traf­fic and rea­ched distances of up to 75 km. The result direct­ly addres­ses the dark-fiber bot­t­len­eck by show­ing that quan­tum-secu­re com­mu­ni­ca­ti­on and high-capa­ci­ty data traf­fic can coexist on the same fiber infra­struc­tu­re used in opti­cal trans­port net­works.

This is par­ti­cu­lar­ly rele­vant for ope­ra­tors and infra­struc­tu­re stake­hol­ders becau­se fiber scar­ci­ty is fre­quent­ly the pri­ma­ry deploy­ment obs­ta­cle. Reser­ving sepa­ra­te fiber for QKD can be cos­t­ly and ope­ra­tio­nal­ly dif­fi­cult, espe­ci­al­ly in high-capa­ci­ty trans­port net­works. Coexis­tence chan­ges that equa­ti­on by allo­wing QKD to run on the same opti­cal infra­struc­tu­re as clas­si­cal data traf­fic. This con­tri­bu­tes to a reduc­tion in deploy­ment fric­tion and enhan­ces the prac­ti­cal fit of quan­tum-safe key­ing within tele­com net­works. The stra­te­gic con­se­quence is clear: QKD can be intro­du­ced into instal­led trans­port infra­struc­tu­re wit­hout a par­al­lel dark-fiber build out or major net­work rede­sign.

“For ope­ra­tors ser­ving cri­ti­cal-infra­struc­tu­re and public-sec­tor cus­to­mers, trust depends on evi­dence. This vali­da­ti­on pro­vi­des exact­ly that: a con­cre­te basis for eva­lua­ting how quan­tum-secu­re key dis­tri­bu­ti­on can be inte­gra­ted into relia­ble, secu­ri­ty-sen­si­ti­ve net­work ser­vices,” says Mate­usz Ozimek, who leads the SEQRET pro­ject at EXATEL and works the­re as Head of the Space Tech­no­lo­gies Team.

The vali­da­ti­on was per­for­med in a two-node set­up over stan­dard G.652.D fiber. To reflect repre­sen­ta­ti­ve net­work con­di­ti­ons, six opti­cal trans­cei­vers were employ­ed, while the rest of the opti­cal trans­port envi­ron­ment was fil­led with noi­se loa­ded chan­nels to emu­la­te a ful­ly popu­la­ted DWDM line. In par­al­lel, a KEE­Quant QKD modu­le gene­ra­ted cryp­to­gra­phic keys, which were deli­ver­ed through the KEE­Quant Key Manage­ment Sys­tem (KMS) to an encryp­tor. A live encrypt­ed video stream was trans­mit­ted using end-to-end encryp­ti­on, show­ing a sys­tem-level imple­men­ta­ti­on rather than an iso­la­ted com­po­nent result.

Sta­ble coexis­tence was demons­tra­ted across three ope­ra­ting points:

  • 80 × 800 Gb/s (64 Tb/s) across the C- and L‑band over 60 km
  • 40 × 800 Gb/s (32 Tb/s) in the C‑band over 65 km
  • 80 × 400 Gb/s (32 Tb/s) across the C- and L‑band over 75 km

The result points to a prac­ti­cal rou­te for inte­gra­ting QKD into exis­ting opti­cal trans­port infra­struc­tu­re with lower deploy­ment fric­tion and wit­hout redu­cing available pay­load capa­ci­ty.

The demons­tra­ti­on brought tog­e­ther the com­ple­men­ta­ry exper­ti­se of seve­ral pro­ject part­ners. KEE­Quant (Ger­ma­ny) pro­vi­ded the QKD and key manage­ment sys­tems and led the over­all inte­gra­ti­on con­cept and end-to-end demons­tra­ti­on. EXATEL (Pol­and) con­tri­bu­ted the tele­com­mu­ni­ca­ti­ons ope­ra­tor per­spec­ti­ve, defi­ning the ope­ra­tio­nal requi­re­ments for real-world net­work deploy­ment. CESNET (Czech Repu­blic) pro­vi­ded an advan­ced test­bed envi­ron­ment and sup­port­ed the vali­da­ti­on pro­cess, while PCSS (Pol­and) sup­pli­ed the opti­cal fibers used for ran­ge test­ing.

Fun­ding
This work was car­ri­ed out with the SEQRET pro­ject. The pro­ject is fun­ded under the Digi­tal Euro­pe Pro­gram­me within the frame­work of Euro­QCI under the DIGITAL-2021-GCI-01-INDUSTRIAL call with the pro­ject ID 101091591

Ack­now­led­ge­ments
KEE­Quant thanks Rib­bon for pro­vi­ding the encryp­ti­on cards.

Con­sor­ti­um and Press Cont­acts
KEE­Quant GmbH
, deve­lo­ps deploya­ble quan­tum-secu­ri­ty tech­no­lo­gies inclu­ding Quan­tum Key Dis­tri­bu­ti­on, key manage­ment and secu­re net­wor­king solu­ti­ons for con­fi­den­tia­li­ty-sen­si­ti­ve infra­struc­tures (Ger­ma­ny)
E‑Mail: press@keequant.com

EXATEL, lea­ding pro­vi­der of tele­com­mu­ni­ca­ti­ons, ICT, and cyber­se­cu­ri­ty tech­no­lo­gies (Pol­and)
E‑Mail: biuroprasowe@exatel.pl

CESNET, Czech Edu­ca­ti­on and Sci­en­ti­fic Net­work (Czech Repu­blic)
E‑Mail: marketing@cesnet.cz

PCSS, Poz­nan Super­com­pu­ting and Net­wor­king Cen­ter (Pol­and)
E‑Mail: pr@man.poznan.pl

 

Published by KEE­Quant

 

Source refe­rence: https://www.keequant.com/press-release-coexistence/#press-release-de