TY - JOUR
T1 - A Method for Simultaneous Control of Beamwidth and Beam Direction in a Cylindrical Metasurface Cloak
AU - Dong, Guoxiang
AU - Xiao, Bo
AU - Qu, Hongyang
AU - Du, Xin
AU - Bai, Bowen
AU - Zhang, Anxue
AU - Chen, Xiaoming
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - In this work, a design method for the cylindrical metasurface cloak capable of simultaneously controlling beamwidth and beam direction is proposed. By precisely tailoring surface waves amplitude distribution along the cylindrical metasurface cloak, both the beamwidth ratio between the incident and outgoing waves and the direction of the outgoing wave can be designed as desired. First, taking a unity beamwidth ratio (1:1) as the design example, an incident Gaussian beam passes through the cylindrical metasurface cloak without reflection, and the outgoing wave maintains the same beamwidth as the incident one, thereby validating the effectiveness of the proposed surface wave coupling based cloak design. Second, to demonstrate beamwidth control capability, cases with beamwidth ratios of 2:1, 1:1.75, and 1:3.5 are successfully implemented. Subsequently, the cylindrical metasurface cloak design enabling directional control of the outgoing wave is presented, in which a horizontally incident Gaussian beam is deflected by the cloak at angles of +20°, –30°, and +50°, respectively. Finally, a cylindrical metasurface cloak design method that allows simultaneous control of both beamwidth and beam direction is established. The required impedance profile of the cylindrical metasurface cloak is realized using subwavelength structural units, and a practical cylindrical metasurface cloak prototype with dual control functionality is designed. Both numerical simulations and experimental measurements further confirm the accuracy of the proposed design method in achieving simultaneous and precise control over beamwidth and beam direction.
AB - In this work, a design method for the cylindrical metasurface cloak capable of simultaneously controlling beamwidth and beam direction is proposed. By precisely tailoring surface waves amplitude distribution along the cylindrical metasurface cloak, both the beamwidth ratio between the incident and outgoing waves and the direction of the outgoing wave can be designed as desired. First, taking a unity beamwidth ratio (1:1) as the design example, an incident Gaussian beam passes through the cylindrical metasurface cloak without reflection, and the outgoing wave maintains the same beamwidth as the incident one, thereby validating the effectiveness of the proposed surface wave coupling based cloak design. Second, to demonstrate beamwidth control capability, cases with beamwidth ratios of 2:1, 1:1.75, and 1:3.5 are successfully implemented. Subsequently, the cylindrical metasurface cloak design enabling directional control of the outgoing wave is presented, in which a horizontally incident Gaussian beam is deflected by the cloak at angles of +20°, –30°, and +50°, respectively. Finally, a cylindrical metasurface cloak design method that allows simultaneous control of both beamwidth and beam direction is established. The required impedance profile of the cylindrical metasurface cloak is realized using subwavelength structural units, and a practical cylindrical metasurface cloak prototype with dual control functionality is designed. Both numerical simulations and experimental measurements further confirm the accuracy of the proposed design method in achieving simultaneous and precise control over beamwidth and beam direction.
KW - Beam power
KW - Metasurface
KW - Surface wave
UR - https://www.scopus.com/pages/publications/105041981457
U2 - 10.1109/TAP.2026.3699532
DO - 10.1109/TAP.2026.3699532
M3 - 文章
AN - SCOPUS:105041981457
SN - 0018-926X
JO - IEEE Transactions on Antennas and Propagation
JF - IEEE Transactions on Antennas and Propagation
ER -